NAME Segue 1 , the SIMBAD biblio

NAME Segue 1 , the SIMBAD biblio (465 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.16CEST18:20:08


Sort references on where and how often the object is cited
trying to find the most relevant references on this object.
More on score
Bibcode/DOI Score in Title|Abstract|
Keywords
in a table in teXt, Caption, ... Nb occurence Nb objects in ref Citations
(from ADS)
Title First 3 Authors
2007ApJ...654..897B 10 34 690 Cats and dogs, hair and a hero: a quintet of new Milky Way companions. BELOKUROV V., ZUCKER D.B., EVANS N.W., et al.
2007MNRAS.374.1125M 1 47 160 The spatial distribution of the Milky Way and Andromeda satellite galaxies. METZ M., KROUPA P. and JERJEN H.
2007ApJ...658..337B 4 28 247 An orphan in the ``Field of streams''. BELOKUROV V., EVANS N.W., IRWIN M.J., et al.
2007A&A...466..181C 38           X         1 26 68 Whiting 1: the youngest globular cluster associated with the Sagittarius dwarf spheroidal galaxy. CARRARO G., ZINN R. and MONI BIDIN C.
2007MNRAS.376.1621M 52       D     X         2 55 20 Structural parameters of Mayall II = G1 in M31. MA J., DE GRIJS R., CHEN D., et al.
2007ApJ...662L..83W 8 12 195 A pair of Bootes: a new Milky Way satellite. WALSH S.M., JERJEN H. and WILLMAN B.
2007ApJ...663..948G 6 32 431 The observed properties of dark matter on small spatial scales. GILMORE G., WILKINSON M.I., WYSE R.F.G., et al.
2007A&A...472..483B 75           X         2 29 16 FSR584 - a new globular cluster in the Galaxy? BICA E., BONATTO C., ORTOLANI S., et al.
2007ApJ...667..878S 29 21 Masses, tidal radii, and escape speeds in dwarf spheroidal galaxies under MOND and dark halos compared. SANCHEZ-SALCEDO F.J. and HERNANDEZ X.
2007MNRAS.381L..45B 37           X         1 16 23 FSR1767 - a new globular cluster in the Galaxy. BONATTO C., BICA E., ORTOLANI S., et al.
2007ApJ...669..337K 4         O           12 108 The discovery of two extremely low luminosity Milky Way globular clusters. KOPOSOV S., DE JONG J.T.A., BELOKUROV V., et al.
2007ApJ...670..313S 101       D     X         3 34 809 The kinematics of the ultra-faint Milky way satellites: solving the missing satellite problem. SIMON J.D. and GEHA M.
2008ApJ...673..226P 41           X         1 41 312 The tidal evolution of Local Group dwarf spheroidals. PENARRUBIA J., NAVARRO J.F. and McCONNACHIE A.W.
2008A&A...477..139L 113           X C       2 23 19 Candidate Milky Way satellites in the Galactic halo. LIU C., HU J., NEWBERG H., et al.
2008A&A...479..741B 38           X         1 33 18 Structural parameters of 11 faint Galactic globular clusters derived with 2MASS. BONATTO C. and BICA E.
2008AJ....135.1361D 655       D     X C       17 22 36 Numerical color-magnitude diagram analysis of Sloan Digital Sky Survey data and application to the new Milky way satellites. DE JONG J.T.A., RIX H.-W., MARTIN N.F., et al.
2008MNRAS.385L..20V 38           X         1 29 7 Globular clusters and dwarf spheroidal galaxies. VAN DEN BERGH S.
2008ApJ...679.1260M 3 23 170 Dark matter subhalos and the dwarf satellites of the Milky Way. MADAU P., DIEMAND J. and KUHLEN M.
2008Natur.454.1096S 12 18 452 A common mass scale for satellite galaxies of the Milky Way. STRIGARI L.E., BULLOCK J.S., KAPLINGHAT M., et al.
2008ApJ...684.1075M 549       D     X C       14 28 432 A comprehensive maximum likelihood analysis of the structural properties of faint Milky Way satellites. MARTIN N.F., DE JONG J.T.A. and RIX H.-W.
2008ApJ...685L..43K 45           X         1 18 279 Uncovering extremely metal-poor stars in the Milky Way's ultrafaint dwarf spheroidal satellite galaxies. KIRBY E.N., SIMON J.D., GEHA M., et al.
2008MNRAS.389.1001L 15       D               1 63 3 The three-dimensional structural shape of the gravitational potential in the Local Group. LEE B. and LEE J.
2008MNRAS.389.1391S 38           X         1 16 21 On the genealogy of the Orphan Stream. SALES L.V., HELMI A., STARKENBURG E., et al.
2008MNRAS.390L..51V 15       D               1 25 11 The luminosity-diameter relations for globular clusters and dwarf spheroidal galaxies. VAN DEN BERGH S.
2008ApJ...686..279K 92       D     X         3 77 332 The luminosity function of the Milky Way satellites. KOPOSOV S., BELOKUROV V., EVANS N.W., et al.
2008ApJ...688..245W 399     A     X         11 32 29 Bootes II ReBooted: an MMT/MegaCam study of an ultrafaint Milky Way satellite. WALSH S.M., WILLMAN B., SAND D., et al.
2008ApJ...688..277T 550       D     X C       14 20 347 Hundreds of Milky Way satellites? luminosity bias in the satellite luminosity function. TOLLERUD E.J., BULLOCK J.S., STRIGARI L.E., et al.
2008AJ....136.2321H viz 185 9 The age and metallicity of the Bootes I system. HUGHES J., WALLERSTEIN G. and BOSSI A.
2009AJ....137..450W 698       D     X C       18 57 159 The invisibles: a detection algorithm to trace the faintest Milky Way satellites. WALSH S.M., WILLMAN B. and JERJEN H.
2008MmSAI..79..352O 38           X         1 12 0 New low latitude globular clusters. ORTOLANI S., BICA E., BARBUY B., et al.
2009ApJ...690..453K 39           X         1 29 102 A spectroscopic confirmation of the Bootes II dwarf spheroidal. KOCH A., WILKINSON M.I., KLEYNA J.T., et al.
2009ApJ...692.1464G viz 6178 T K A D S   X C F     160 61 201 The least-luminous galaxy: spectroscopy of the Milky Way satellite Segue 1. GEHA M., WILLMAN B., SIMON J.D., et al.
2009ApJ...693.1859B 170       D     X         5 27 172 Pre-reionization fossils, ultra-faint dwarfs, and the missing galactic satellite problem. BOVILL M.S. and RICOTTI M.
2009AJ....137.3809C 38           X         1 13 19 The globular cluster AM 4: yet another young globular associated with the Sgr dwarf spheroidal galaxy? CARRARO G.
2009A&A...496..683M viz 114           X C       2 140 34 The early-type dwarf galaxy population of the Centaurus cluster. MISGELD I., HILKER M. and MIESKE S.
2009ApJ...695L..83M 38           X         1 37 23 Pulsating variable stars in the Coma Berenices dwarf spheroidal galaxy. MUSELLA I., RIPEPI V., CLEMENTINI G., et al.
2009AJ....137.4361D 152           X C       3 55 33 Scl-dE1 GC1: an extended globular cluster in a low-luminosity dwarf elliptical galaxy. DA COSTA G.S., GREBEL E.K., JERJEN H., et al.
2009ApJ...696..385G 131       D     X   F     3 71 345 H I in local group dwarf galaxies and stripping by the galactic halo. GRCEVICH J. and PUTMAN M.E.
2009ApJ...696.2179K 18       D               1 26 207 A quantitative explanation of the observed population of Milky Way satellite galaxies. KOPOSOV S.E., YOO J., RIX H.-W., et al.
2009ApJ...699L.125M 38           X         1 35 40 The Leo IV dwarf spheroidal galaxy: color-magnitude diagram and pulsating stars. MORETTI M.I., DALL'ORA M., RIPEPI V., et al.
2009MNRAS.396.1619C 76           X         2 38 20 A spectroscopic survey of EC4, an extended cluster in Andromeda's halo. COLLINS M.L.M., CHAPMAN S.C., IRWIN M., et al.
2009ApJ...702L...9C 39           X         1 8 19 Kinematics and metallicities in the Bootes III stellar overdensity: a disrupted dwarf galaxy? CARLIN J.L., GRILLMAIR C.J., MUNOZ R.R., et al.
2009MNRAS.397.1748B viz 212     A     X         6 363 168 The discovery of Segue 2: a prototype of the population of satellites of satellites. BELOKUROV V., WALKER M.G., EVANS N.W., et al.
2009ApJ...704..898S viz 40           X         1 14 67 The star formation history and extended structure of the Hercules Milky Way satellite. SAND D.J., OLSZEWSKI E.W., WILLMAN B., et al.
2009ApJ...704.1274W 24       D     X         1 30 575 A universal mass profile for dwarf spheroidal galaxies? WALKER M.G., MATEO M., OLSZEWSKI E.W., et al.
2009ApJ...705.1043K 38           X         1 43 15 The SPLASH survey: a spectroscopic analysis of the metal-poor, low-luminosity M31 dSph satellite Andromeda X. KALIRAI J.S., ZUCKER D.B., GUHATHAKURTA P., et al.
2009ApJ...705L.158K 38           X         1 17 24 Spectroscopic confirmation of the Pisces overdensity. KOLLMEIER J.A., GOULD A., SHECTMAN S., et al.
2009MNRAS.400L..52X 1996 T   A     X C       51 1 6 Dark matter dominated dwarf disc galaxy
Segue 1.
XIANG-GRUESS M., LOU Y.-Q. and DUSCHL W.J.
2009MNRAS.400.1593M 120           X         3 4 54 Probing the epoch of reionization with Milky way satellites. MUNOZ J.A., MADAU P., LOEB A., et al.
2009MNRAS.398.1771N 4626 T K A D S   X C F     119 9 70 The origin of
Segue 1.
NIEDERSTE-OSTHOLT M., BELOKUROV V., EVANS N.W., et al.
2010ApJ...710.1664D viz 77           X         2 11 41 The enigmatic pair of dwarf galaxies Leo IV and Leo V: coincidence or common origin? DE JONG J.T.A., MARTIN N.F., RIX H.-W., et al.
2010ApJ...711...32N 521     A     X C F     12 21 119 The orbit of the Orphan stream. NEWBERG H.J., WILLETT B.A., YANNY B., et al.
2010ApJ...711..671K 53       D     X         2 56 105 The SPLASH survey: internal kinematics, chemical abundances, and masses of the Andromeda I, II, III, VII, X, and XIV dwarf spheroidal galaxies. KALIRAI J.S., BEATON R.L., GEHA M.C., et al.
2009ARA&A..47..371T 158           X         4 65 906 Star-Formation Histories, Abundances, and Kinematics of Dwarf Galaxies in the Local Group. TOLSTOY E., HILL V. and TOSI M.
2010ApJ...712..147A 161           X         4 16 271 Observations of Milky Way dwarf spheroidal galaxies with the fermi-large area telescope detector and constraints on dark matter models. ABDO A.A., ACKERMANN M., AJELLO M., et al.
2010ApJ...717L..87W 154           X C       3 12 42 Comparing the dark matter halos of spiral, low surface brightness, and dwarf spheroidal galaxies. WALKER M.G., McGAUGH S.S., MATEO M., et al.
2010ApJ...717.1043B 100     A     X         3 21 64 Stealth galaxies in the halo of the Milky Way. BULLOCK J.S., STEWART K.R., KAPLINGHAT M., et al.
2010MNRAS.406..264W 17       D               1 59 284 The masses of the Milky way and Andromeda galaxies. WATKINS L.L., EVANS N.W. and AN J.H.
2010ApJ...718.1128L 932       D S   X         24 90 209 Assessing the Milky Way satellites associated with the Sagittarius dwarf spheroidal galaxy. LAW D.R. and MAJEWSKI S.R.
2010MNRAS.406.1220W 25       D               1 32 660 Accurate masses for dispersion-supported galaxies. WOLF J., MARTINEZ G.D., BULLOCK J.S., et al.
2010MNRAS.406.1290P 57           X         1 6 230 The impact of dark matter cusps and cores on the satellite galaxy population around spiral galaxies. PENARRUBIA J., BENSON A.J., WALKER M.G., et al.
2010PABei..28..268G 24 0 Progress on the evolution of the dark matter halo substructure. GAN J.-L., CHANG R.-X. and HOU J.-L.
2010ApJ...722L.104N 978 T K A S   X C F     22 13 56 An extremely carbon-rich, extremely metal-poor star in the Segue 1 system. NORRIS J.E., GILMORE G., WYSE R.F.G., et al.
2010ApJ...722..248M 246       D     X         7 29 123 Local group dwarf spheroidals: correlated deviations from the baryonic Tully-Fisher relation. McGAUGH S.S. and WOLF J.
2010MNRAS.407.2411C 76           X         2 52 48 A Keck/DEIMOS spectroscopic survey of the faint M31 satellites AndIX, AndXI, AndXII and AndXIII. COLLINS M.L.M., CHAPMAN S.C., IRWIN M.J., et al.
2010ApJ...722L.209M 741       D     X C       19 19 69 Revisiting the influence of unidentified binaries on velocity dispersion measurements in ultra-faint stellar systems. McCONNACHIE A.W. and COTE P.
2010MNRAS.404.1203F 39           X         1 119 316 Accreted versus in situ Milky way globular clusters. FORBES D.A. and BRIDGES T.
2010ApJ...723.1632N viz 6255 T K A D S   X C       162 282 153 Chemical enrichment in the faintest galaxies: the carbon and iron abundance spreads in the Bootes I dwarf spheroidal galaxy and the Segue 1 system. NORRIS J.E., WYSE R.F.G., GILMORE G., et al.
2010MNRAS.408L..85J 92       D       C       2 39 4 GCN: a gaseous galactic halo stream ? JIN S.
2010MNRAS.409L.128M 1281 T K A     X C       32 8 13 Swift observation of
Segue 1: constraints on sterile neutrino parameters in the darkest galaxy.
MIRABAL N.
2010A&A...523A..32K 171       D     X C       4 30 199 Local-group tests of dark-matter concordance cosmology. Towards a new paradigm for structure formation. KROUPA P., FAMAEY B., DE BOER K.S., et al.
2010ApJS..191..352K viz 38           X         1 3052 166 Multi-element abundance measurements from medium-resolution spectra. II. Catalog of stars in Milky Way dwarf satellite galaxies. KIRBY E.N., GUHATHAKURTA P., SIMON J.D., et al.
2010ApJ...725L.131P 41           X         1 4 29 Can the excess in the Fe XXVI lyγ line from the galactic center provide evidence for 17 keV sterile neutrinos? PROKHOROV D. and SILK J.
2011ApJ...726..108T viz 15       D               1 171 60 From galaxy clusters to ultra-faint dwarf spheroidals: a fundamental curve connecting dispersion-supported galaxies to their dark matter halos. TOLLERUD E.J., BULLOCK J.S., GRAVES G.J., et al.
2011ApJ...727...78K 42           X         1 28 270 Multi-element abundance measurements from medium-resolution spectra. III. Metallicity distributions of Milky way dwarf satellite galaxies. KIRBY E.N., LANFRANCHI G.A., SIMON J.D., et al.
2011PABei..29....1K 22 0 Progress on the study of the Milky Way satellite galaxies. KANG X.
2011MNRAS.411.1480D 15       D               1 64 67 Rotation of halo populations in the Milky Way and M31. DEASON A.J., BELOKUROV V. and EVANS N.W.
2011MNRAS.411.2118A 768     A D S   X C       19 33 59 Phase-space models of the dwarf spheroidals. AMORISCO N.C. and EVANS N.W.
2011MNRAS.412.1881K 38           X         1 40 10 A wide-field survey of satellite galaxies around the spiral galaxy M106. KIM E., KIM M., HWANG N., et al.
2011MNRAS.413..863K 77           X         2 15 14 The curious case of Palomar 13: the influence of the orbital phase on the appearance of galactic satellites. KUPPER A.H.W., MIESKE S. and KROUPA P.
2011MNRAS.410.1975W 15       D               1 39 62 Satellite galaxies in hydrodynamical simulations of Milky way sized galaxies. WADEPUHL M. and SPRINGEL V.
2011ApJ...733...46S viz 10100   K A D S   X C       262 408 266 A complete spectroscopic survey of the Milky Way satellite
Segue 1: the darkest galaxy.
SIMON J.D., GEHA M., MINOR Q.E., et al.
2011PASJ...63S.523H 39           X         1 11 22 Enrichment of heavy elements in the red giant S 15-19 in the Sextans dwarf spheroidal galaxy. HONDA S., AOKI W., ARIMOTO N., et al.
2011MNRAS.414..770H 116           X   F     2 31 67 Exploring the properties of the M31 halo globular cluster system. HUXOR A.P., FERGUSON A.M.N., TANVIR N.R., et al.
2011MNRAS.414.3699M viz 15       D               1 493 156 Families of dynamically hot stellar systems over 10 orders of magnitude in mass. MISGELD I. and HILKER M.
2011ApJ...737..103S 953             C       1 3 5260 Measuring reddening with Sloan Digital Sky Survey stellar spectra and recalibrating SFD. SCHLAFLY E.F. and FINKBEINER D.P.
2011ApJ...738...51L 38           X         1 50 61 The [Fe/H], [C/Fe], and [α/Fe] distributions of the Bootes I dwarf spheroidal galaxy. LAI D.K., LEE Y.S., BOLTE M., et al.
2011ApJ...738...55M 3578   K A D S   X C       92 4 60 A complete spectroscopic survey of the Milky way satellite segue 1: dark matter content, stellar membership, and binary properties from a bayesian analysis. MARTINEZ G.D., MINOR Q.E., BULLOCK J., et al.
2011AJ....142...88F viz 38           X         1 142 35 Segue 3: an old, extremely low luminosity star cluster in the Milky Way's halo. FADELY R., WILLMAN B., GEHA M., et al.
2011A&A...532A.104N viz 15       D               1 976 78 Hubble flow around Fornax cluster of galaxies. NASONOVA O.G., DE FREITAS PACHECO J.A. and KARACHENTSEV I.D.
2011PASA...28...77F 307           X         8 28 27 What is a galaxy? Cast your vote here. FORBES D.A. and KROUPA P.
2011AJ....142..128W 215     A     X         6 105 125 Willman 1–A probable dwarf galaxy with an irregular kinematic distribution. WILLMAN B., GEHA M., STRADER J., et al.
2011ApJ...741...17B 208       D     X         6 32 69 Where are the fossils of the first galaxies? I. Local volume maps and properties of the undetected dwarfs. BOVILL M.S. and RICOTTI M.
2011ApJ...741...18B 361       D     X         10 71 93 Where are the fossils of the first galaxies? II. True fossils, ghost halos, and the missing bright satellites. BOVILL M.S. and RICOTTI M.
2011MNRAS.417.1170C 230           X   F     5 78 21 The scatter about the `Universal' dwarf spheroidal mass profile: a kinematic study of the M31 satellites And V and And VI. COLLINS M.L.M., CHAPMAN S.C., RICH R.M., et al.
2011AJ....142..199B viz 15       D               2 975 169 The relationships among compact stellar systems: a fresh view of ultracompact dwarfs. BRODIE J.P., ROMANOWSKY A.J., STRADER J., et al.
2011MNRAS.418..648S 54       D     X         2 33 53 Clues to the `Magellanic galaxy' from cosmological simulations. SALES L.V., NAVARRO J.F., COOPER A.P., et al.
2011ApJ...743..167B viz 38           X         1 307 31 Structure and dynamics of the globular cluster Palomar 13. BRADFORD J.D., GEHA M., MUNOZ R.R., et al.
2011ApJ...743..179B 15       D               1 50 37 What sets the sizes of the faintest galaxies? BRASSEUR C.M., MARTIN N.F., MACCIO A.V., et al.
2012MNRAS.419.1362Y 193           X C F     3 52 26 HST/WFPC2 imaging of the dwarf satellites And XI and And XIII: horizontal branch morphology and RR Lyraes. YANG S.-C. and SARAJEDINI A.
2012ApJ...745..127M 117           X C       2 7 19 Measuring sizes of ultra-faint dwarf galaxies. MUNOZ R.R., PADMANABHAN N. and GEHA M.
2012ApJ...746...77V 39           X         1 10 12 Prospects for a dark matter annihilation signal toward the Sagittarius dwarf galaxy with ground-based cherenkov telescopes. VIANA A., MEDINA M.C., PENARRUBIA J., et al.
2012MNRAS.420.1183H 39           X         1 7 5 Probabilistic distributions of M/L values for ultrafaint dwarf spheroidal galaxies: stochastic samplings of the initial mass function. HERNANDEZ X.
2012ApJ...747..121A 46           X         1 7 110 Search for dark matter satellites using Fermi-LAT. ACKERMANN M., ALBERT A., BALDINI L., et al.
2012MNRAS.421.1215J 39           X         1 13 8 Dark matter detection with hard X-ray telescopes. JELTEMA T.E. and PROFUMO S.
2012A&A...539A.123B 39           X         1 23 20 Cleaning spectroscopic samples of stars in nearby dwarf galaxies. The use of the nIR Mg I line to weed out Milky Way contaminants. BATTAGLIA G. and STARKENBURG E.
2012ApJ...752...45T viz 41           X         1 31 164 The SPLASH survey: spectroscopy of 15 M31 dwarf spheroidal satellite galaxies. TOLLERUD E.J., BEATON R.L., GEHA M.C., et al.
2012MNRAS.423.1883D 15       D               1 26 13 Applying scale-free mass estimators to the Local Group in constrained local universe simulations. DI CINTIO A., KNEBE A., LIBESKIND N.I., et al.
2012ApJ...753L..15M 40           X         1 9 35 The discovery of an ultra-faint star cluster in the constellation of Ursa Minor. MUNOZ R.R., GEHA M., COTE P., et al.
2012ApJ...753..145C 681     A S   X C       16 14 24 The origin of the Virgo stellar substructure. CARLIN J.L., YAM W., CASETTI-DINESCU D.I., et al.
2012AJ....144....4M viz 20       D               2 119 1400 The observed properties of dwarf galaxies in and around the Local Group. McCONNACHIE A.W.
2011ARA&A..49..155P 116           X         3 21 79 Dark matter searches with astroparticle data. PORTER T.A., JOHNSON R.P. and GRAHAM P.W.
2011ARA&A..49..373B 74           X         1 5 368 The first galaxies. BROMM V. and YOSHIDA N.
2012AJ....144...76W 713       D     X C       18 59 172 "Galaxy," defined. WILLMAN B. and STRADER J.
2012MNRAS.424.1941C 93       D         F     3 23 31 Dwarf spheroidal satellites of the Milky way from dark matter free tidal dwarf galaxy progenitors: maps of orbits. CASAS R.A., ARIAS V., PENA RAMIREZ K., et al.
2012MNRAS.425..231R 350     A D     X C F     8 24 110 Infall times for Milky way satellites from their present-day kinematics. ROCHA M., PETER A.H.G. and BULLOCK J.
2012ApJ...756...79S viz 16       D               1 32 90 Tidal signatures in the faintest Milky Way satellites: the detailed properties of Leo V, Pisces II, and Canes venatici II. SAND D.J., STRADER J., WILLMAN B., et al.
2012ApJ...756..108C viz 77           X         2 37 37 Variability and star formation in Leo T, the lowest luminosity star-forming galaxy known today. CLEMENTINI G., CIGNONI M., CONTRERAS RAMOS R., et al.
2012MNRAS.425.1628B 77               F     1 7 13 Constraints on sterile neutrino dark matter from XMM–Newton observations of M33. BORRIELLO E., PAOLILLO M., MIELE G., et al.
2012APh....37...26M 1 11 40 A model-independent analysis of the Fermi Large Area Telescope gamma-ray data from the Milky Way dwarf galaxies and halo to constrain dark matter scenarios. MAZZIOTTA M.N., LOPARCO F., DE PALMA F., et al.
2012ApJ...759..111K 77             C       1 28 24 The chemical signature of a relic star cluster in the Sextans dwarf spheroidal galaxy–Implications for near-field cosmology. KARLSSON T., BLAND-HAWTHORN J., FREEMAN K.C., et al.
2012ApJ...759..115F 223     A     X C       5 7 92 Chemical signatures of the first galaxies: criteria for one-shot enrichment. FREBEL A. and BROMM V.
2012AJ....144..183L 209       D     X C       5 85 17 Insights into pre-enrichment of star clusters and self-enrichment of dwarf galaxies from their intrinsic metallicity dispersions. LEAMAN R.
2012PASA...29..383J 325       D     X C       8 43 2 Galaxies on sub-Galactic scales. JERJEN H.
2012PASA...29..395K 42           X         1 29 190 The dark matter crisis: falsification of the current standard model of cosmology. KROUPA P.
2013AJ....145...26R 118           X         3 27 57 Are there any stars lacking neutron-capture elements? Evidence from strontium and barium. ROEDERER I.U.
2013ApJ...763...61G viz 314           X C       7 13 72 Elemental abundances and their implications for the chemical enrichment of the Bootes I ultrafaint galaxy. GILMORE G., NORRIS J.E., MONACO L., et al.
2012MNRAS.426.1731D 39           X         1 4 5 The galaxy ancestor problem. DISNEY M.J. and LANG R.H.
2013ApJ...764...39C 156           X         4 23 18 Hunting the parent of the Orphan stream: identifying stream members from low-resolution spectroscopy. CASEY A.R., DA COSTA G., KELLER S.C., et al.
2013MNRAS.429..725S 56       D     X         2 28 61 The satellites of the Milky way - insights from semi-analytic modelling in a ΛCDM cosmology. STARKENBURG E., HELMI A., DE LUCIA G., et al.
2013MNRAS.429.1437R 39           X         1 11 10 The mass-loss process in dwarf galaxies from 3D hydrodynamical simulations: the role of dark matter and starbursts. RUIZ L.O., FALCETA-GONCALVES D., LANFRANCHI G.A., et al.
2013MNRAS.430...81R 221           X         3 3 626 Cosmological simulations with self-interacting dark matter - I. Constant-density cores and substructure. ROCHA M., PETER A.H.G., BULLOCK J.S., et al.
2013AJ....145..101K viz 16       D               1 873 387 Updated nearby galaxy catalog. KARACHENTSEV I.D., MAKAROV D.I. and KAISINA E.I.
2013A&A...551A..68M 390           X         10 6 2 Mass limits for dark clusters of degenerate fermions. MEMBRADO M. and PACHECO A.F.
2013ApJ...767..134V viz 1131     A D S   X C       28 155 94 The distribution of alpha elements in ultra-faint dwarf galaxies. VARGAS L.C., GEHA M., KIRBY E.N., et al.
2013Msngr.151...25G 78 T                   1 6 7 Bootes-I,
Segue 1, the Orphan Stream and CEMP-no stars: Extreme systems quantifying feedback and chemical evolution in the oldest and smallest galaxies.
GILMORE G., KOPOSOV S., NORRIS J.E., et al.
2013AJ....145..123S 39           X         1 49 7 Carbon abundances for red giants in the Draco dwarf spheroidal galaxy. SHETRONE M.D., SMITH G.H., STANFORD L.M., et al.
2013MNRAS.432L..71M 312           X         8 22 2 Search for dark matter in compact hydrogen clouds. MIRABAL N.
2013ApJ...770...16K viz 624           X C       15 658 118 Segue 2: the least massive galaxy. KIRBY E.N., BOYLAN-KOLCHIN M., COHEN J.G., et al.
2013A&A...553A..93B 78           X         2 44 7 The variability of carbon stars in the Sagittarius dwarf spheroidal galaxy. BATTINELLI P. and DEMERS S.
2013ApJ...770L..17M 39           X         1 11 13 A peculiar faint satellite in the remote outer halo of M31. MacKEY A.D., HUXOR A.P., MARTIN N.F., et al.
2013ApJ...771...39F 1583 T   A     X C       39 62 6 The 300 km/s stellar stream near Segue 1: insights from high-resolution spectroscopy of its brightest star. FREBEL A., LUNNAN R., CASEY A.R., et al.
2013ApJ...772..109B 16       D               1 30 3 Luminous satellites versus dark subhalos: clustering in the Milky Way. BOZEK B., WYSE R.F.G. and GILMORE G.
2013MNRAS.433.1813S 40           X         1 21 83 Stream-orbit misalignment - I. The dangers of orbit-fitting. SANDERS J.L. and BINNEY J.
2013ApJ...773...61S 39           X         1 16 23 A deep search for extended radio continuum emission from dwarf spheroidal galaxies: implications for particle dark matter. SPEKKENS K., MASON B.S., AGUIRRE J.E., et al.
2013ApJ...774..106S 39           X         1 24 20 A MegaCam survey of outer halo satellites. II. Blue stragglers in the lowest stellar density systems. SANTANA F.A., MUNOZ R.R., GEHA M., et al.
2013AJ....146...94B 78           X         2 21 18 A search for RR Lyrae stars in Segue 2 and Segue 3. BOETTCHER E., WILLMAN B., FADELY R., et al.
2013ApJ...776...26S viz 78             C       3 103 39 Tracing the Orphan stream to 55 kpc with RR Lyrae stars. SESAR B., GRILLMAIR C.J., COHEN J.G., et al.
2013MNRAS.435.1928P viz 94       D     X         3 86 140 Dwarf galaxy planes: the discovery of symmetric structures in the Local Group. PAWLOWSKI M.S., KROUPA P. and JERJEN H.
2013MNRAS.435.2116P 18       D               2 27 150 The rotationally stabilized VPOS and predicted proper motions of the Milky Way satellite galaxies. PAWLOWSKI M.S. and KROUPA P.
2012ARA&A..50..251I 40           X         1 34 118 Galactic stellar population in the era of the Sloan Digital Sky Survey and other large surveys. IVEZIC Z., BEERS T.C. and JURIC M.
2014AJ....147...13K viz 16       D               1 804 28 Suites of dwarfs around nearby giant galaxies. KARACHENTSEV I.D., KAISINA E.I. and MAKAROV D.I.
2014MNRAS.438.1242L 39           X         1 4 7 Relativistic self-similar dynamic collapses of black holes in general polytropic spherical clouds. LIAN B. and LOU Y.-Q.
2014ApJ...783....7C 16       D               1 62 69 The masses of local group dwarf spheroidal galaxies: the death of the universal mass profile. COLLINS M.L.M., CHAPMAN S.C., RICH R.M., et al.
2014MNRAS.439..179D 39           X         1 8 7 Semi-analytical description of formation of galaxies and clusters of galaxies. DEMIANSKI M. and DOROSHKEVICH A.G.
2014MNRAS.439..788H viz 39           X         1 129 2 Photometric metallicities in Bootes I. HUGHES J., WALLERSTEIN G., DOTTER A., et al.
2014A&A...562A..20C 39           X         1 7 11 Binary-corrected velocity dispersions from single- and multi-epoch radial velocities: massive stars in R136 as a test case. COTTAAR M. and HENAULT-BRUNET V.
2014A&A...562A.134B viz 39           X         1 21 4 A lower bound on the Milky Way mass from general phase-space distribution function models. BRATEK L., SIKORA S., JALOCHA J., et al.
2014ApJ...784...19C viz 1046     A     X         27 26 10 Hunting the parent of the Orphan stream. II. The first high-resolution spectroscopic study. CASEY A.R., KELLER S.C., DA COSTA G., et al.
2014ApJ...784...76Y viz 94       D       C       2 627 9 The early chemical enrichment histories of two Sculptor group dwarf galaxies as revealed by RR Lyrae variables. YANG S.-C., WAGNER-KAISER R., SARAJEDINI A., et al.
2014ApJ...784..158R 39           X         1 26 48 Neutron-capture nucleosynthesis in the first stars. ROEDERER I.U., PRESTON G.W., THOMPSON I.B., et al.
2014ApJ...786...74F viz 6927 T   A D S   X C       174 26 163 Segue 1: an unevolved fossil galaxy from the early universe. FREBEL A., SIMON J.D. and KIRBY E.N.
2014MNRAS.440L..76S 41           X         1 6 26 Formation of the first low-mass stars from cosmological initial conditions. SAFRANEK-SHRADER C., MILOSAVLJEVIC M. and BROMM V.
2014MNRAS.440...50M 39           X         1 11 19 Dwarf spheroidal satellite formation in a reionized Local Group. MILOSAVLJEVIC M. and BROMM V.
2014MNRAS.440.2665R viz 157           X C       3 21 19 Detailed abundance analysis of the brightest star in Segue 2, the least massive galaxy. ROEDERER I.U. and KIRBY E.N.
2014ApJ...789..147W viz 81             C       1 62 363 The star formation histories of local group dwarf galaxies. I. Hubble Space Telescope/Wide Field Planetary Camera 2 observations. WEISZ D.R., DOLPHIN A.E., SKILLMAN E.D., et al.
2014AJ....148...19P 79           X         2 17 8 Reinvestigating the clusters Koposov 1 and 2. PAUST N., WILSON D. and VAN BELLE G.
2014MNRAS.441.2124B 276           X C F     5 27 77 ATLAS lifts the Cup: discovery of a new Milky Way satellite in Crater. BELOKUROV V., IRWIN M.J., KOPOSOV S.E., et al.
2014ApJ...790...74P 16       D               1 44 25 The vast polar structure of the Milky Way attains new members. PAWLOWSKI M.S. and KROUPA P.
2014ApJ...791..116C 277           X C       6 13 64 Carbon-enhanced metal-poor stars: relics from the dark ages. COOKE R.J. and MADAU P.
2014ApJ...793..135S viz 765       D     X C       19 5 23 Stacking the invisibles: a guided search for low-luminosity Milky Way satellites. SESAR B., BANHOLZER S.R., COHEN J.G., et al.
2014ApJ...794...89K 40           X         1 9 28 A chemical confirmation of the faint Bootes II dwarf spheroidal galaxy. KOCH A. and RICH R.M.
2014MNRAS.442.1197H 16       D               1 30 11 Subhaloes gone Notts: subhaloes as tracers of the dark matter halo shape. HOFFMANN K., PLANELLES S., GAZTANAGA E., et al.
2014MNRAS.442.1718P 79           X         2 12 9 Evidence for substructure in Ursa Minor dwarf spheroidal galaxy using a Bayesian object detection method. PACE A.B., MARTINEZ G.D., KAPLINGHAT M., et al.
2014ApJ...795L...5S 18       D               1 27 115 The dearth of neutral hydrogen in galactic dwarf spheroidal galaxies. SPEKKENS K., URBANCIC N., MASON B.S., et al.
2014ApJ...795L..13H 121           X         3 16 96 Too many, too few, or just right? the predicted number and distribution of Milky Way dwarf galaxies. HARGIS J.R., WILLMAN B. and PETER A.H.G.
2014MNRAS.443.1151N viz 16       D               1 888 133 The AIMSS Project - I. Bridging the star cluster-galaxy divide. NORRIS M.A., KANNAPPAN S.J., FORBES D.A., et al.
2014ApJ...796...11W 393       S   X C       8 12 13 Ultrafaint dwarfs–Star formation and chemical evolution in the smallest galaxies. WEBSTER D., SUTHERLAND R. and BLAND-HAWTHORN J.
2014MNRAS.444.3975D 80           X         2 15 35 TriAnd and its siblings: satellites of satellites in the Milky Way halo. DEASON A.J., BELOKUROV V., HAMREN K.M., et al.
2013NewA...22...39D 17       D               1 24 55 Fermionic warm dark matter produces galaxy cores in the observed scales because of quantum mechanics. DESTRI C., DE VEGA H.J. and SANCHEZ N.G.
2015ApJS..216...10B viz 135       D     X         4 63 56 An infrared census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS). I. Overview. BOYER M.L., McQUINN K.B.W., BARMBY P., et al.
2015ApJ...800...12C 40           X         1 35 48 The most metal-poor damped Lyα systems: an insight into dwarf galaxies at high-redshift. COOKE R.J., PETTINI M. and JORGENSON R.A.
2015ApJ...800...51B viz 40           X         1 52 48 An infrared census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS). II. Discovery of metal-poor dusty AGB stars. BOYER M.L., McQUINN K.B.W., BARMBY P., et al.
2015MNRAS.446.3002B 45           X         1 5 54 Spherical Jeans analysis for dark matter indirect detection in dwarf spheroidal galaxies - impact of physical parameters and triaxiality. BONNIVARD V., COMBET C., MAURIN D., et al.
2015ApJ...801...74G viz 894       D     X C       22 22 188 Dwarf galaxy annihilation and decay emission profiles for dark matter experiments. GERINGER-SAMETH A., KOUSHIAPPAS S.M. and WALKER M.
2015ApJ...801..125K viz 160           X         4 32 68 Carbon in red giants in globular clusters and dwarf spheroidal galaxies. KIRBY E.N., GUO M., ZHANG A.J., et al.
2015A&A...575A..67B 161           X         4 10 52 A new look at the cosmic ray positron fraction. BOUDAUD M., AUPETIT S., CAROFF S., et al.
2015ApJ...802L..18L 306     A     X C       7 16 136 A new faint Milky Way satellite discovered in the Pan-STARRS1 3π survey. LAEVENS B.P.M., MARTIN N.F., IBATA R.A., et al.
2015ApJ...805..130K 86           X         2 31 455 Beasts of the southern wild : discovery of nine ultra faint satellites in the vicinity of the Magellanic Clouds. KOPOSOV S.E., BELOKUROV V., TORREALBA G., et al.
2015ApJ...806...54E 16       D               1 98 21 Estimating the galactic mass profile in the presence of incomplete data. EADIE G.M., HARRIS W.E. and WIDROW L.M.
2015ApJ...806...95S viz 40           X         1 102 31 A comprehensive archival search for counterparts to ultra-compact high-velocity clouds: five local volume dwarf galaxies. SAND D.J., CRNOJEVIC D., BENNET P., et al.
2015ApJ...807..171J viz 79             C       1 131 106 High-resolution spectroscopic study of extremely metal-poor star candidates from the SkyMapper survey. JACOBSON H.R., KELLER S., FREBEL A., et al.
2015A&A...579A..28B viz 41           X         1 46 146 TOPoS. II. On the bimodality of carbon abundance in CEMP stars. Implications on the early chemical evolution of galaxies. BONIFACIO P., CAFFAU E., SPITE M., et al.
2015A&A...579A.134S 40           X         1 19 1 Motion of halo tracer objects in the gravitational potential of a low-mass model of the Galaxy. SIKORA S., BRATEK L., JALOCHA J., et al.
2015ApJ...808...95S viz 278           X         7 72 135 Stellar kinematics and metallicities in the ultra-faint dwarf galaxy Reticulum II. SIMON J.D., DRLICA-WAGNER A., LI T.S., et al.
2015ApJ...808..108W viz 40           X         1 47 60 Magellan/M2FS spectroscopy of the Reticulum 2 dwarf spheroidal galaxy. WALKER M.G., MATEO M., OLSZEWSKI E.W., et al.
2015ApJS..219...37M 119           X C       2 27 ~ Confronting galactic and extragalactic γ-rays observed by Fermi-LAT with annihilating dark matter in an inert Higgs doublet model. MODAK K.P. and MAJUMDAR D.
2015ARA&A..53..631F 639           X C       15 38 346 Near-field cosmology with extremely metal-poor stars. FREBEL A. and NORRIS J.E.
2015ApJ...809L...4D 43           X         1 24 176 Search for gamma-ray emission from DES dwarf spheroidal galaxy candidates with Fermi-LAT data. DRLICA-WAGNER A., ALBERT A., BECHTOL K., et al.
2015ApJ...810L..27F 82           X         2 9 54 SD 1313-0019: another second-generation star with [Fe/H] = -5.0, observed with the Magellan telescope. FREBEL A., CHITI A., JI A.P., et al.
2015ApJ...811...35J 56       D     X         2 8 10 Searching for optical counterparts to ultra-compact high velocity clouds: possible detection of a counterpart to AGC 198606. JANESH W., RHODE K.L., SALZER J.J., et al.
2015ApJ...811...62K 80           X         2 52 132 Kinematics and chemistry of recently discovered Reticulum 2 and Horologium 1 dwarf galaxies. KOPOSOV S.E., CASEY A.R., BELOKUROV V., et al.
2015ApJ...807...49W 42           X         1 22 114 Satellite dwarf galaxies in a hierarchical universe: infall histories, group preprocessing, and reionization. WETZEL A.R., DEASON A.J. and GARRISON-KIMMEL S.
2015ApJ...807...50B 20       D               1 49 486 Eight new Milky Way companions discovered in first-year dark energy survey data. BECHTOL K., DRLICA-WAGNER A., BALBINOT E., et al.
2015AJ....150..160B 135       D     X C       3 38 21 Charting unexplored dwarf galaxy territory with RR Lyrae. BAKER M. and WILLMAN B.
2015MNRAS.451.2524M 57       D     X         2 21 79 A robust determination of Milky Way satellite properties using hierarchical mass modelling. MARTINEZ G.D.
2015ApJ...813..109D 123           X         3 50 422 Eight ultra-faint galaxy candidates discovered in year two of the dark energy survey. DRLICA-WAGNER A., BECHTOL K., RYKOFF E.S., et al.
2015MNRAS.452.1152J 41           X         1 4 13 The first galaxies: simulating their feedback-regulated assembly. JEON M., BROMM V., PAWLIK A.H., et al.
2015ApJ...814L...7K 27 36 Triangulum II: possibly a very dense ultra-faint dwarf galaxy. KIRBY E.N., COHEN J.G., SIMON J.D., et al.
2015MNRAS.453..541A 357           X C F     7 23 9 Detection of satellite remnants in the Galactic halo with Gaia- III. Detection limits for ultrafaint dwarf galaxies. ANTOJA T., MATEU C., AGUILAR L., et al.
2015MNRAS.453..849B 1074     A D     X   F     27 25 144 Dark matter annihilation and decay in dwarf spheroidal galaxies: the classical and ultrafaint dSphs. BONNIVARD V., COMBET C., DANIEL M., et al.
2015MNRAS.453.1047P 175       D       C F     3 59 57 The new Milky Way satellites: alignment with the VPOS and predictions for proper motions and velocity dispersions. PAWLOWSKI M.S., McGAUGH S.S. and JERJEN H.
2015MNRAS.453.3575J 16       D               1 28 26 Comprehensive assessment of the too big to fail problem. JIANG F. and VAN DEN BOSCH F.C.
2015MNRAS.454.1320S 240           X C       5 19 77 Carbon-enhanced metal-poor stars in dwarf galaxies. SALVADORI S., SKULADOTTIR A. and TOLSTOY E.
2016ApJ...817...41J viz 323           X C       7 14 29 High-resolution spectroscopy of extremely metal-poor stars in the least-evolved galaxies: Bootes II. JI A.P., FREBEL A., SIMON J.D., et al.
2016ApJ...817...84K 56       D     X         2 96 73 Scaling laws for dark matter halos in late-type and dwarf spheroidal galaxies. KORMENDY J. and FREEMAN K.C.
2016MNRAS.455.3288S 42           X         1 7 14 Star formation in the first galaxies - III. Formation, evolution, and characteristics of the first metal-enriched stellar cluster. SAFRANEK-SHRADER C., MONTGOMERY M.H., MILOSAVLJEVIC M., et al.
2016ApJ...818...10G 52           X         1 7 86 The caterpillar project: a large suite of Milky Way sized halos. GRIFFEN B.F., JI A.P., DOOLEY G.A., et al.
2016ApJ...818...40M 241           X         6 62 24 Triangulum II: a very metal-poor and dynamically hot stellar system. MARTIN N.F., IBATA R.A., COLLINS M.L.M., et al.
2016ApJ...818...41S 16       D               1 35 5 Inferring the galactic potential with GAIA and friends: synergies with other surveys. SANDERSON R.E.
2016ApJ...818...80W 4079 T   A S   X C       99 9 12 Segue 1 – a compressed star formation history before reionization. WEBSTER D., FREBEL A. and BLAND-HAWTHORN J.
2016MNRAS.456..448P 16       D               1 34 15 The alignment of SDSS satellites with the VPOS: effects of the survey footprint shape. PAWLOWSKI M.S.
2016AJ....151...82R viz 125           X C       2 24 128 Detailed chemical abundances in the r-process-rich ultra-faint dwarf galaxy Reticulum 2. ROEDERER I.U., MATEO M., BAILEY III J.I., et al.
2016Natur.531..610J 13 20 279 r-process enrichment from a single event in an ancient dwarf galaxy. JI A.P., FREBEL A., CHITI A., et al.
2016AJ....151..118V 136       D     X C       3 55 15 Variable stars in the field of the Hydra II ultra-faint dwarf galaxy. VIVAS A.K., OLSEN K., BLUM R., et al.
2016MNRAS.458L..59M viz 81           X         2 40 50 Is Draco II one of the faintest dwarf galaxies? First study from Keck/DEIMOS spectroscopy. MARTIN N.F., GEHA M., IBATA R.A., et al.
2016MNRAS.458L..84A 48           X         1 1 8 A method for comparing non-nested models with application to astrophysical searches for new physics. ALGERI S., CONRAD J. and VAN DYK D.A.
2016MNRAS.458.1678H 40           X         1 55 10 Solo dwarfs I: survey introduction and first results for the Sagittarius dwarf irregular galaxy. HIGGS C.R., McCONNACHIE A.W., IRWIN M., et al.
2016ApJ...824L..31B 33       D               1 16 284 Constraints on MACHO dark matter from compact stellar systems in ultra-faint dwarf galaxies. BRANDT T.D.
2016ApJ...826...57B 40           X         1 16 15 On the r-process enrichment of dwarf spheroidal galaxies. BRAMANTE J. and LINDEN T.
2016ApJ...826..110F viz 1003           X C       24 59 26 The chemical evolution of the Bootes I ultra-faint dwarf galaxy. FREBEL A., NORRIS J.E., GILMORE G., et al.
2016MNRAS.460.4492D viz 16       D               1 1781 14 An extensive catalogue of early-type galaxies in the nearby Universe. DABRINGHAUSEN J. and FELLHAUER M.
2016ARA&A..54..363D 42           X         1 62 132 The Magellanic Stream:circumnavigating the galaxy. D'ONGHIA E. and FOX A.J.
2016MNRAS.461.2914H 940       D     X C F     22 28 51 Dark matter annihilation and decay from non-spherical dark halos in galactic dwarf satellites. HAYASHI K., ICHIKAWA K., MATSUMOTO S., et al.
2016MNRAS.461.3630D 2449 T K A D     X C F     59 4 6 Could
Segue 1 be a destroyed star cluster? - a dynamical perspective.
DOMINGUEZ R., FELLHAUER M., BLANA M., et al.
2016ApJ...830...93J viz 166           X C       3 26 135 Complete element abundances of nine stars in the r-process galaxy Reticulum II. JI A.P., FREBEL A., SIMON J.D., et al.
2016RAA....16..163C 16       D               1 19 ~ Does the gamma-ray signal from the central Milky Way indicate Sommerfeld enhancement of dark matter annihilation ? CHAN M.-H.
2016MNRAS.462..223B 1591 T   A S   X C       37 8 16 Contamination of stellar-kinematic samples and uncertainty about dark matter annihilation profiles in ultrafaint dwarf galaxies: the example of
Segue I.
BONNIVARD V., MAURIN D. and WALKER M.G.
2016MNRAS.463..598S 81           X         2 4 4 Scl-1013644: a CEMP-s star in the Sculptor dwarf spheroidal galaxy. SALGADO C., DA COSTA G.S., YONG D., et al.
2016ApJ...832L...3J 162           X         4 13 23 Chemical diversity in the ultra-faint dwarf galaxy Tucana II. JI A.P., FREBEL A., EZZEDDINE R., et al.
2016ApJ...832L...6W 136       D     X         4 34 12 Estimating the GeV emission of millisecond pulsars in dwarf spheroidal galaxies. WINTER M., ZAHARIJAS G., BECHTOL K., et al.
2016ApJ...832...21H 58           X         1 4 73 A new Milky Way satellite discovered in the Subaru/Hyper Suprime-Cam survey. HOMMA D., CHIBA M., OKAMOTO S., et al.
2016MNRAS.463.1759B 323       S   X C       6 47 101 A Synoptic Map of Halo Substructures from the Pan-STARRS1 3π Survey. BERNARD E.J., FERGUSON A.M.N., SCHLAFLY E.F., et al.
2016ApJ...832..149B 139       D     X         4 12 39 r-process production sites as inferred from eu abundances in dwarf galaxies. BENIAMINI P., HOTOKEZAKA K. and PIRAN T.
2016ApJ...833...16K 41           X         1 25 25 Portrait of a dark horse: a photometric and spectroscopic study of the ultra-faint Milky Way satellite Pegasus III. KIM D., JERJEN H., GEHA M., et al.
2016A&A...595A..25S 120           X   F     2 43 13 Search for 511 keV emission in satellite galaxies of the Milky Way with INTEGRAL/SPI. SIEGERT T., DIEHL R., VINCENT A.C., et al.
2017ApJ...834..110A 9 50 477 Searching for dark matter annihilation in recently discovered Milky Way satellites with Fermi-Lat. ALBERT A., ANDERSON B., BECHTOL K., et al.
2017AJ....153....6K viz 16       D               1 405 10 The Local Tully-Fisher relation for dwarf galaxies. KARACHENTSEV I.D., KAISINA E.I. and KASHIBADZE O.G.
2017ApJ...835...23R 122           X         3 17 10 The origin of the heaviest metals in most ultra-faint dwarf galaxies. ROEDERER I.U.
2017ApJ...836..127F 127           X C       2 2 10 Planck lensing and cosmic infrared background cross-correlation with Fermi-LAT: tracing dark matter signals in the gamma-ray background. FENG C., COORAY A. and KEATING B.
2017ApJ...836..152L 19       D               1 93 291 One law to rule them all: the radial acceleration relation of galaxies. LELLI F., McGAUGH S.S., SCHOMBERT J.M., et al.
2017ApJ...837L..16J 41           X         1 15 9 Detection of an optical counterpart to the ALFALFA ultra-compact high-velocity cloud AGC 249525. JANESH W., RHODE K.L., SALZER J.J., et al.
2017ApJ...838...11S viz 203           X         5 127 88 Nearest neighbor: the low-mass Milky Way satellite Tucana III. SIMON J.D., LI T.S., DRLICA-WAGNER A., et al.
2017ApJ...839...20C 51           X         1 10 103 Crater 2: an extremely cold dark matter halo. CALDWELL N., WALKER M.G., MATEO M., et al.
2017MNRAS.466.1741C 244           X         6 38 7 The contribution of dissolving star clusters to the population of ultra faint objects in the outer halo of the Milky Way. CONTENTA F., GIELES M., BALBINOT E., et al.
2017AJ....153..204S viz 41           X         1 46977 123 Machine-learned identification of RR Lyrae stars from sparse, multi-band data: the PS1 sample. SESAR B., HERNITSCHEK N., MITROVIC S., et al.
2017AJ....153..254S viz 122           X         3 212 15 The binary fraction of stars in dwarf galaxies: the case of Leo II. SPENCER M.E., MATEO M., WALKER M.G., et al.
2017MNRAS.466.3741V 609           X C       14 24 15 Gemini/GRACES spectroscopy of stars in Tri II. VENN K.A., STARKENBURG E., MALO L., et al.
2017MNRAS.467....2L 41           X         1 7 4 Relativistic self-similar dynamic gravitational collapses of a quasi-spherical general polytropic magnetofluid. LOU Y.-Q. and XIA Y.-K.
2017ApJ...845L..10M 42           X         1 9 15 Serendipitous discovery of RR Lyrae stars in the Leo V ultra-faint galaxy. MEDINA G.E., MUNOZ R.R., VIVAS A.K., et al.
2017ApJ...845...24K 44           X         1 6 18 Preliminary evidence for a virial shock around the Coma galaxy cluster. KESHET U., KUSHNIR D., LOEB A., et al.
2017ApJ...845L..13M 325           X C       7 7 4 Disentangling the potential dark matter origin of LIGO's black holes. MAGEE R. and HANNA C.
2017A&A...604A.129M viz 41           X         1 73 18 The formation of the Milky Way halo and its dwarf satellites: a NLTE-1D abundance analysis. I. Homogeneous set of atmospheric parameters. MASHONKINA L., JABLONKA P., PAKHOMOV Y., et al.
2017MNRAS.469.2335C 17       D               1 27 48 Knowing the unknowns: uncertainties in simple estimators of galactic dynamical masses. CAMPBELL D.J.R., FRENK C.S., JENKINS A., et al.
2017ApJ...848...85J 388       D     X C       9 14 93 Connecting the first galaxies with ultrafaint dwarfs in the Local Group: chemical signatures of Population III stars. JEON M., BESLA G. and BROMM V.
2017MNRAS.471..404K 41           X         1 35 ~ Carbon-enhanced metal-poor stars in the SDSS-APOGEE data base. KIELTY C.L., VENN K.A., LOEWEN N.B., et al.
2017A&A...606A.112S viz 81           X         2 11 5 Abundance analysis of a CEMP-no star in the Carina dwarf spheroidal galaxy. SUSMITHA A., KOCH A. and SIVARANI T.
2017ApJ...850..179C viz 81           X         2 28 7 The universality of the rapid neutron-capture process revealed by a possible disrupted dwarf galaxy star. CASEY A.R. and SCHLAUFMAN K.C.
2018ApJ...852...68C 576           X C       13 41 23 On the nature of ultra-faint dwarf galaxy candidates. I. DES1, Eridanus III, and Tucana V. CONN B.C., JERJEN H., KIM D., et al.
2018ApJ...852...99N viz 82             C       1 28 13 Chemical abundance analysis of three α-poor, metal-poor stars in the ultrafaint dwarf galaxy Horologium I. NAGASAWA D.Q., MARSHALL J.L., LI T.S., et al.
2017MNRAS.472.2670S 16       D               1 69 5 The shapes and alignments of the satellites of the Milky Way and Andromeda. SANDERS J.L. and EVANS N.W.
2018ApJ...853...60W 41           X         1 25 ~ Gas expulsion in MOND: the possible origin of diffuse globular clusters and ultra-faint dwarf galaxies. WU X. and KROUPA P.
2018ApJ...853..154A 636       D     X C       15 16 41 Dark matter limits from dwarf spheroidal galaxies with the HAWC gamma-ray observatory. ALBERT A., ALFARO R., ALVAREZ C., et al.
2018MNRAS.473.5015A 41           X         1 14 ~ A possible formation scenario for dwarf spheroidal galaxies - III. Adding star formation histories to the fiducial model. ALARCON JARA A.G., FELLHAUER M., MATUS CARRILLO D.R., et al.
2018MNRAS.473.5308M 100       D         F     6 44 50 Predicting the locations of possible long-lived low-mass first stars: importance of satellite dwarf galaxies. MAGG M., HARTWIG T., AGARWAL B., et al.
2018A&A...609A..11K 99       D       C       2 229 7 Cosmic flow around local massive galaxies. KASHIBADZE O.G. and KARACHENTSEV I.D.
2018MNRAS.474.2479B viz 41           X         1 151 76 The devil is in the tails: the role of globular cluster mass evolution on stream properties. BALBINOT E. and GIELES M.
2018ApJ...857...74C viz 82           X         2 18 16 Chemical abundances of new member stars in the Tucana II dwarf galaxy. CHITI A., FREBEL A., JI A.P., et al.
2018A&A...611A..81M 329           X         8 24 ~ Bose-Einstein condensate haloes embedded in dark energy. MEMBRADO M. and PACHECO A.F.
2018MNRAS.475.4868C 45           X         1 2 8 Exploring simulated early star formation in the context of the ultrafaint dwarf galaxies. CORLIES L., JOHNSTON K.V. and WISE J.H.
2018MNRAS.475.5385D 947     A D S   X C F     21 26 4 Phase-space mass bound for fermionic dark matter from dwarf spheroidal galaxies. DI PAOLO C., NESTI F. and VILLANTE F.L.
2018MNRAS.476....2Z 16       D               1 6 5 Primordial black holes as dark matter: constraints from compact ultra-faint dwarfs. ZHU Q., VASILIEV E., LI Y., et al.
2018MNRAS.476.3816F 17       D               3 80 84 Tidal stripping and the structure of dwarf galaxies in the Local Group. FATTAHI A., NAVARRO J.F., FRENK C.S., et al.
2018MNRAS.473.2060J 227       D     X         6 27 136 The upper bound on the lowest mass halo. JETHWA P., ERKAL D. and BELOKUROV V.
2018AJ....155..256P viz 41           X         1 1700 8 Spectroscopic validation of low-metallicity stars from RAVE. PLACCO V.M., BEERS T.C., SANTUCCI R.M., et al.
2018ApJ...860...65M viz 305       D     X C       7 66 6 A MegaCAM Survey of outer halo satellites. I. Description of the Survey. MUNOZ R.R., COTE P., SANTANA F.A., et al.
2018ApJ...860...66M 594       D S   X C       13 95 119 A MegaCAM survey of outer halo satellites. III. Photometric and structural parameters. MUNOZ R.R., COTE P., SANTANA F.A., et al.
2018ApJ...860...76H 222       D     X         6 32 9 Galactic forces rule the dynamics of Milky Way dwarf galaxies. HAMMER F., YANG Y., ARENOU F., et al.
2018ApJ...860..164F 4718 T K A S   X C       112 10 10 The orbit and origin of the ultra-faint dwarf galaxy
Segue 1.
FRITZ T.K., LOKKEN M., KALLIVAYALIL N., et al.
2018ApJ...861...23J viz 123           X C       2 115 11 RR Lyrae variables in the Crater II dwarf galaxy. JOO S.-J., KYEONG J., YANG S.-C., et al.
2018MNRAS.478.1994B 43           X         1 8 18 Retainment of r-process material in dwarf galaxies. BENIAMINI P., DVORKIN I. and SILK J.
2018MNRAS.478.3756C 226           X C       3 3 185 Primordial black holes as generators of cosmic structures. CARR B. and SILK J.
2018MNRAS.478.3879S 44           X         1 6 20 Tidal disruption of dwarf spheroidal galaxies: the strange case of Crater II. SANDERS J.L., EVANS N.W. and DEHNEN W.
2018ApJ...863...25M viz 85           X         2 21 74 A deeper look at the new Milky Way satellites: Sagittarius II, Reticulum II, Phoenix II, and Tucana III. MUTLU-PAKDIL B., SAND D.J., CARLIN J.L., et al.
2018ApJ...863...89S viz 840       D     X C       20 1159 133 Gaia proper motions and orbits of the ultra-faint Milky Way satellites. SIMON J.D.
2018MNRAS.479...64I 757       D     X C F     17 9 2 Foreground effect on the J-factor estimation of ultrafaint dwarf spheroidal galaxies. ICHIKAWA K., HORIGOME S.-I., ISHIGAKI M.N., et al.
2018MNRAS.479.2853N 17       D               1 57 106 The total satellite population of the Milky Way. NEWTON O., CAUTUN M., JENKINS A., et al.
2018MNRAS.479.4136K viz 16       D               1 1019 3 Morphological properties of galaxies in different Local Volume environments. KARACHENTSEV I.D., KAISINA E.I. and MAKAROV D.I.
2018MNRAS.479.5343K viz 41           X         1 159 84 Snake in the Clouds: a new nearby dwarf galaxy in the Magellanic bridge. KOPOSOV S.E., WALKER M.G., BELOKUROV V., et al.
2018A&A...617A..56S 165           X         4 16 9 A CEMP-no star in the ultra-faint dwarf galaxy Pisces II. SPITE M., SPITE F., FRANCOIS P., et al.
2018ApJ...866...42F 519 T   A     X         12 36 2 The origin of the 300 km s–1 stream near
Segue 1.
FU S.W., SIMON J.D., SHETRONE M., et al.
2018ApJS..238...36A 45           X         1 22 108 JINAbase-A database for chemical abundances of metal-poor stars. ABOHALIMA A. and FREBEL A.
2018MNRAS.480.2609L 123           X C       2 92 57 Pristine dwarf galaxy survey - I. A detailed photometric and spectroscopic study of the very metal-poor Draco II satellite. LONGEARD N., MARTIN N., STARKENBURG E., et al.
2018MNRAS.481L..69S 41           X         1 4 3 Minimum star-forming halo mass in axion cosmology. SULLIVAN J.M., HIRANO S. and BROMM V.
2018MNRAS.481..918A viz 16       D               1 189 3 Spatial distribution of globular clusters in the Galaxy. ARAKELYAN N.R., PILIPENKO S.V. and LIBESKIND N.I.
2018A&A...619A.103F 143       D     X         4 56 221 Gaia DR2 proper motions of dwarf galaxies within 420 kpc. Orbits, Milky Way mass, tidal influences, planar alignments, and group infall. FRITZ T.K., BATTAGLIA G., PAWLOWSKI M.S., et al.
2018AJ....156..257S viz 82           X         2 1341 37 The binary fraction of stars in dwarf galaxies: the cases of Draco and Ursa Minor. SPENCER M.E., MATEO M., OLSZEWSKI E.W., et al.
2018MNRAS.481.5073E 85               F     5 25 76 Systematics in virial mass estimators for pressure-supported systems. ERRANI R., PENARRUBIA J. and WALKER M.G.
2019ApJ...870...83J viz 126           X         3 32 61 Chemical abundances in the ultra-faint dwarf galaxies Grus I and Triangulum II: neutron-capture elements as a defining feature of the faintest dwarfs. JI A.P., SIMON J.D., FREBEL A., et al.
2019ApJ...870..122P viz 42           X         1 859 1 The r-process Alliance: spectroscopic follow-up of low-metallicity star candidates from the Best & Brightest Survey. PLACCO V.M., SANTUCCI R.M., BEERS T.C., et al.
2019MNRAS.483.1314B 18       D               1 82 97 NIHAO XV: the environmental impact of the host galaxy on galactic satellite and field dwarf galaxies. BUCK T., MACCIO A.V., DUTTON A.A., et al.
2017PASJ...69...76S 382       D     X C       9 50 23 Stellar Abundances for Galactic Archaeology Database. IV. Compilation of stars in dwarf galaxies. SUDA T., HIDAKA J., AOKI W., et al.
2019ApJ...871...49H 184       D     X         5 52 7 Precision distances to dwarf galaxies and globular clusters from Pan-STARRS1 3π RR Lyrae. HERNITSCHEK N., COHEN J.G., RIX H.-W., et al.
2019MNRAS.482.3480P 142       D     X         4 60 20 Scaling relations for dark matter annihilation and decay profiles in dwarf spheroidal galaxies. PACE A.B. and STRIGARI L.E.
2019MNRAS.483.2000L 17       D               1 14 5 The abundance of satellite galaxies in the inner region of ΛCDM Milky Way sized haloes. LI M., GAO L. and WANG J.
2019MNRAS.483.4031W 125           X   F     2 43 ~ The suppression of star formation on the smallest scales: what role does environment play? WIMBERLY M.K.R., COOPER M.C., FILLINGHAM S.P., et al.
2019ApJ...871..247B 42           X         1 21 7 The origin of r-process enhanced metal-poor halo stars in now-destroyed ultra-faint dwarf galaxies. BRAUER K., JI A.P., FREBEL A., et al.
2019MNRAS.484.3093S 84           X         2 204 2 An investigation of C, N, and Na abundances in red giant stars of the Sculptor dwarf spheroidal galaxy. SALGADO C., DA COSTA G.S., NORRIS J.E., et al.
2019ApJ...873...34N 210           X C       4 33 59 Modeling the connection between subhalos and satellites in Milky Way-like systems. NADLER E.O., MAO Y.-Y., GREEN G.M., et al.
2019A&A...623A.129F viz 42           X         1 289 15 Gaia DR 2 and VLT/FLAMES search for new satellites of the LMC. FRITZ T.K., CARRERA R., BATTAGLIA G., et al.
2019ApJ...874...29M 17       D               1 78 2 A MegaCAM survey of outer halo satellites. VII. A single Sersic index versus effective radius relation for Milky Way outer halo satellites. MARCHI-LASCH S., MUNOZ R.R., SANTANA F.A., et al.
2019ApJ...875..120J 84             C       1 27 2 RR Lyrae stars in the field of Sagittarius II. JOO S.-J., KYEONG J., YANG S.-C., et al.
2019MNRAS.485.4726K viz 167           X   F     3 129 88 Piercing the Milky Way: an all-sky view of the Orphan Stream. KOPOSOV S.E., BELOKUROV V., LI T.S., et al.
2019AJ....157..183J 42           X         1 38 ~ Five gas-rich ultrafaint dwarf galaxy candidates discovered in WIYN imaging of ALFALFA sources. JANESH W., RHODE K.L., SALZER J.J., et al.
2019MNRAS.486.2679R 17       D               2 46 8 The velocity anisotropy of the Milky Way satellite system. RILEY A.H., FATTAHI A., PACE A.B., et al.
2019ApJ...878...97Y 251           X         6 15 6 Origin of the CEMP-no group morphology in the Milky Way. YOON J., BEERS T.C., TIAN D., et al.
2019ApJ...879...37N 17       D               1 74 7 The most metal-poor stars. V. The CEMP-no stars in 3D and non-LTE. NORRIS J.E. and YONG D.
2019MNRAS.487.2961M 239     A     X         6 5 28 Robust velocity dispersion and binary population modelling of the ultrafaint dwarf galaxy Reticulum II. MINOR Q.E., PACE A.B., MARSHALL J.L., et al.
2019MNRAS.487.5799R 252           X   F     5 35 59 Abundance matching with the mean star formation rate: there is no missing satellites problem in the Milky Way above M200 ∼ 109 M. READ J.I. and ERKAL D.
2019MNRAS.488.2743T viz 42           X         1 244 123 The hidden giant: discovery of an enormous Galactic dwarf satellite in Gaia DR2. TORREALBA G., BELOKUROV V., KOPOSOV S.E., et al.
2019MNRAS.488.4585G 19       D               1 21 43 How low does it go? Too few Galactic satellites with standard reionization quenching. GRAUS A.S., BULLOCK J.S., KELLEY T., et al.
2019ApJ...882..177M viz 125           X C       2 25 10 Chemical abundance analysis of Tucana III, the second r-process enhanced ultra-faint dwarf galaxy. MARSHALL J.L., HANSEN T., SIMON J.D., et al.
2019ApJ...883...84R viz 42           X         1 49 ~ High-resolution optical spectroscopy of stars in the Sylgr stellar stream. ROEDERER I.U. and GNEDIN O.Y.
2019ApJ...883..171H 100       D     X         3 54 5 On the absence of dark matter in dwarf galaxies surrounding the Milky Way. HAMMER F., YANG Y., WANG J., et al.
2019ApJ...885...33H 84             C       1 23 ~ Enrichment of strontium in dwarf galaxies. HIRAI Y., WANAJO S. and SAITOH T.R.
2019ApJ...885...53M viz 84           X         2 142 ~ Signatures of tidal disruption in ultra-faint dwarf galaxies: a combined HST, Gaia, and MMT/Hectochelle study of Leo V. MUTLU-PAKDIL B., SAND D.J., WALKER M.G., et al.
2019MNRAS.490..231K 87               F     2 24 76 Too big to fail in light of Gaia. KAPLINGHAT M., VALLI M. and YU H.-B.
2019MNRAS.490.1498L 84             C       1 84 ~ Detailed study of the Milky Way globular cluster Laevens 3. LONGEARD N., MARTIN N., IBATA R.A., et al.
2019MNRAS.490.2183M 17       D               1 75 34 Search for RR Lyrae stars in DES ultrafaint systems: Grus I, Kim 2, Phoenix II, and Grus II. MARTINEZ-VAZQUEZ C.E., VIVAS A.K., GUREVICH M., et al.
2019MNRAS.490.5647M viz 17       D               1 1738 ~ Searching for correlations in Gaia DR2 unbound star trajectories. MONTANARI F., BARRADO D. and GARCIA-BELLIDO J.
2019PASJ...71...94H 1 30 40 Boötes. IV. A new Milky Way satellite discovered in the Subaru Hyper Suprime-Cam Survey and implications for the missing satellite problem. HOMMA D., CHIBA M., KOMIYAMA Y., et al.
2020MNRAS.491..356L viz 85             C       1 163 31 The Pristine Dwarf-Galaxy survey - II. In-depth observational study of the faint Milky Way satellite Sagittarius II. LONGEARD N., MARTIN N., STARKENBURG E., et al.
2020MNRAS.491.2520K 43           X         1 9 ~ Warm dark matter model with a few keV mass is bad for the too-big-to-fail problem. KANG X.
2020ApJ...889...27J viz 128           X         3 36 31 Detailed abundances in the ultra-faint Magellanic satellites Carina II and III. JI A.P., LI T.S., SIMON J.D., et al.
2020ApJ...890...18M 43           X         1 10 ~ Globular cluster formation from colliding substructure. MADAU P., LUPI A., DIEMAND J., et al.
2020MNRAS.492.3241V viz 128           X         3 134 41 The Pristine survey - IX. CFHT ESPaDOnS spectroscopic analysis of 115 bright metal-poor candidate stars. VENN K.A., KIELTY C.L., SESTITO F., et al.
2020MNRAS.492.5247S 358       D     X   F     8 27 ~ Improved constraints from ultra-faint dwarf galaxies on primordial black holes as dark matter. STEGMANN J., CAPELO P.R., BORTOLAS E., et al.
2020ApJS..247...35V 187       D     X         5 101 ~ Gaia RR Lyrae stars in nearby ultra-faint dwarf satellite galaxies. VIVAS A.K., MARTINEZ-VAZQUEZ C. and WALKER A.R.
2020A&A...635A.107Z viz 43           X         1 40 ~ The MUSE-Faint survey. I. Spectroscopic evidence for a star cluster in Eridanus 2 and constraints on MACHOs as a constituent of dark matter. ZOUTENDIJK S.L., BRINCHMANN J., BOOGAARD L.A., et al.
2020ApJ...892...27M 60       D     X         2 45 ~ Stellar density profiles of dwarf spheroidal galaxies. MOSKOWITZ A.G. and WALKER M.G.
2020ApJ...893...21S 946           X C       21 8 87 Ultra-light dark matter is incompatible with the Milky Way's dwarf satellites. SAFARZADEH M. and SPERGEL D.N.
2020ApJ...893...47D viz 18       D               2 67 116 Milky Way satellite census. I. The observational selection function for Milky Way satellites in DES y3 and Pan-STARRS DR1. DRLICA-WAGNER A., BECHTOL K., MAU S., et al.
2020ApJ...893...48N 19       D               1 43 102 Milky Way satellite census. II. Galaxy-halo connection constraints including the impact of the Large Magellanic Cloud. NADLER E.O., WECHSLER R.H., BECHTOL K., et al.
2020ApJ...893..121P 1621     A D     X C       38 30 93 The orbital histories of Magellanic satellites using Gaia DR2 proper motions. PATEL E., KALLIVAYALIL N., GARAVITO-CAMARGO N., et al.
2020ApJ...894....7Y 85           X         2 16 ~ Identification of a Group III CEMP-no star in the dwarf spheroidal galaxy Canes Venatici I. YOON J., WHITTEN D.D., BEERS T.C., et al.
2020MNRAS.494..135C 43           X         1 40 ~ Searching for dark matter signals from local dwarf spheroidal galaxies at low radio frequencies in the GLEAM survey. COOK R.H.W., SEYMOUR N., SPEKKENS K., et al.
2020ApJ...894..135S viz 17       D               1 66 ~ The Isaac Newton Telescope monitoring survey of Local Group dwarf galaxies. I. Survey overview And first results for Andromeda I. SAREMI E., JAVADI A., VAN LOON J.T., et al.
2020MNRAS.494.5178F 17       D               1 56 40 The mass of our Galaxy from satellite proper motions in the Gaia era. FRITZ T.K., DI CINTIO A., BATTAGLIA G., et al.
2020MNRAS.495.2554E 18       D               2 49 79 Limit on the LMC mass from a census of its satellites. ERKAL D. and BELOKUROV V.A.
2020MNRAS.495.3276L 213           X C       4 19 ~ Chemical evolution of ultrafaint dwarf galaxies: testing the IGIMF. LACCHIN E., MATTEUCCI F., VINCENZO F., et al.
2020ApJ...896..152R 43           X         1 3 ~ Effect of binarity in star cluster dynamical mass determination. RASTELLO S., CARRARO G. and CAPUZZO-DOLCETTA R.
2020ApJ...897...71S 43           X         1 11 ~ Planes of satellites around simulated disk galaxies. I. Finding high-quality planar configurations from positional information and their comparison to MW/M31 data. SANTOS-SANTOS I., DOMINGUEZ-TENREIRO R., ARTAL H., et al.
2020ApJ...897..183H viz 43           X         1 32 ~ Chemical analysis of the ultrafaint dwarf galaxy Grus II. Signature of high-mass stellar Nucleosynthesis. HANSEN T.T., MARSHALL J.L., SIMON J.D., et al.
2020AJ....160..124M 528       D     X         13 174 54 Revised and new proper motions for confirmed and candidate Milky Way dwarf galaxies. McCONNACHIE A.W. and VENN K.A.
2020ApJ...900...69X 17       D               1 29 ~ Testing ΛCDM with dwarf galaxy morphology. XU W.L. and RANDALL L.
2020A&A...641A.127R viz 128     A D     X         4 401 41 Neutron-capture elements in dwarf galaxies. III. A homogenized analysis of 13 dwarf spheroidal and ultra-faint galaxies. REICHERT M., HANSEN C.J., HANKE M., et al.
2020A&A...641A.135S viz 43           X         1 19 ~ A wide angle view of the Sagittarius dwarf spheroidal galaxy. II. A CEMP-r/s star in the Sagittarius dwarf spheroidal galaxy. SBORDONE L., HANSEN C.J., MONACO L., et al.
2020AJ....160..181J viz 43           X         1 74 47 The Southern Stellar Stream Spectroscopic Survey (S5): chemical Abundances of seven stellar streams. JI A.P., LI T.S., HANSEN T.T., et al.
2020MNRAS.499.3755S 102       D         F     5 103 ~ An updated detailed characterization of planes of satellites in the MW and M31. SANTOS-SANTOS I.M., DOMINGUEZ-TENREIRO R. and PAWLOWSKI M.S.
2021MNRAS.500..889A viz 218           X C       4 83 32 The S2 stream: the shreds of a primitive dwarf galaxy. AGUADO D.S., MYEONG G.C., BELOKUROV V., et al.
2021MNRAS.500..986H 61       D     X         2 69 ~ Search for globular clusters associated with the Milky Way dwarf galaxies using Gaia DR2. HUANG K.-W. and KOPOSOV S.E.
2020ApJ...905..109M 43           X         1 21 16 Long-term orbital evolution of galactic satellites and the effects on their star formation histories. MIYOSHI T. and CHIBA M.
2021MNRAS.500.2937A 235       D     X C       5 178 ~ The orbital evolution of UFDs and GCs in an evolving Galactic potential. ARMSTRONG B.M., BEKKI K. and LUDLOW A.D.
2021MNRAS.500.5589H 17       D               1 46 ~ Addressing γ-ray emissions from dark matter annihilations in 45 Milky Way satellite galaxies and in extragalactic sources with particle dark matter models. HALDER A., BANERJEE S., PANDEY M., et al.
2021ApJ...908L...8A 89             C       1 24 49 Elevated r-process enrichment in Gaia Sausage and Sequoia. AGUADO D.S., BELOKUROV V., MYEONG G.C., et al.
2021MNRAS.502....1J 132           X C       2 12 18 The role of faint population III supernovae in forming CEMP stars in ultra-faint dwarf galaxies. JEON M., BROMM V., BESLA G., et al.
2021ApJ...908L..23L 87             C       1 3 ~ Constraining primordial black holes with dwarf galaxy heating. LU P., TAKHISTOV V., GELMINI G.B., et al.
2021ApJ...909..192G viz 46           X         1 9 23 The star formation history of Eridanus II: on the role of supernova feedback in the quenching of ultrafaint dwarf galaxies. GALLART C., MONELLI M., RUIZ-LARA T., et al.
2021ApJ...910...18C 44           X         1 26 22 Discovery of an ultra-faint stellar system near the Magellanic Clouds with the DECam Local Volume Exploration Survey. CERNY W., PACE A.B., DRLICA-WAGNER A., et al.
2021A&A...648A..78P viz 174           X C       3 90 10 Milky Way archaeology using RR Lyrae and type II Cepheids. I. The Orphan stream in 7D using RR Lyrae stars. PRUDIL Z., HANKE M., LEMASLE B., et al.
2021MNRAS.504.1183S 1828 T   A D S   X   F     40 38 4 The formation of the milky way halo and its dwarf satellites: a NLTE-1D abundance analysis. IV.
Segue 1, Triangulum II, and Coma Berenices UFDs.
SITNOVA T.M., MASHONKINA L.I., TATARNIKOV A.M., et al.
2021ApJ...912L...3H 680     A     X C       15 20 36 Narrowing the mass range of fuzzy dark matter with ultrafaint dwarfs. HAYASHI K., FERREIRA E.G.M. and CHAN H.Y.J.
2021NatAs...5..392C 92           X         2 7 35 An extended halo around an ancient dwarf galaxy. CHITI A., FREBEL A., SIMON J.D., et al.
2021NatAs...5..478M 17       D               1 45 ~ Destruction of the central black hole gas reservoir through head-on galaxy collisions. MIKI Y., MORI M. and KAWAGUCHI T.
2021MNRAS.504.1657K 44           X         1 12 10 An enquiry on the origins of N-rich stars in the inner Galaxy based on APOGEE chemical compositions. KISKU S., SCHIAVON R.P., HORTA D., et al.
2021ApJ...913...53P viz 17       D               3 123 72 The gas content and stripping of Local Group dwarf galaxies. PUTMAN M.E., ZHENG Y., PRICE-WHELAN A.M., et al.
2021MNRAS.504.4551S 104       D         F     5 55 23 Magellanic satellites in ΛCDM cosmological hydrodynamical simulations of the Local Group. SANTOS-SANTOS I.M.E., FATTAHI A., SALES L.V., et al.
2021ApJ...914L..37S 113     A     X   F     2 32 6 The challenge to MOND from ultra-faint dwarf galaxies. SAFARZADEH M. and LOEB A.
2021MNRAS.505.3755T 435           X C F     8 23 6 s-process enrichment of ultrafaint dwarf galaxies. TARUMI Y., SUDA T., VAN DE VOORT F., et al.
2021ApJ...916....8L 366       D     X C       8 56 53 Gaia EDR3 proper motions of Milky Way dwarfs. I. 3D motions and orbits. LI H., HAMMER F., BABUSIAUX C., et al.
2021MNRAS.506.1850J 88             C       1 10 12 Highly r-process enhanced stars in ultra-faint dwarf galaxies. JEON M., BESLA G. and BROMM V.
2021MNRAS.507.3246H 17       D               1 4479 15 The nucleation fraction of local volume galaxies. HOYER N., NEUMAYER N., GEORGIEV I.Y., et al.
2021MNRAS.508.5709Y 261           X C       5 1 ~ Influences of accreting primordial black holes on the global 21 cm signal in the dark ages. YANG Y.
2021ApJ...920...92J 18       D               1 17 24 Very Large Telescope spectroscopy of ultra-faint dwarf galaxies. I. Boötes I, Leo IV, and Leo V. JENKINS S.A., LI T.S., PACE A.B., et al.
2021ApJS..257...42L 44           X         1 77 18 One of everything: the Breakthrough Listen Exotica Catalog. LACKI B.C., BRZYCKI B., CROFT S., et al.
2021ApJ...922...93H 87             C       1 49 13 Gaia EDR3 proper motions of Milky Way dwarfs. II. Velocities, total energy, and angular momentum. HAMMER F., WANG J., PAWLOWSKI M.S., et al.
2022ApJ...924...23W 135           X         3 6 10 Contribution of Gaia Sausage to the Galactic stellar halo revealed by K giants and blue horizontal branch stars from the Large Sky Area Multi-Object Fiber Spectroscopic Telescope, Sloan Digital Sky Survey, and Gaia. WU W., ZHAO G., XUE X.-X., et al.
2022ApJ...924..131S 18       D               1 39 6 Galactic Mass estimates using dwarf galaxies as kinematic tracers. SLIZEWSKI A., DUFRESNE X., MURDOCK K., et al.
2022A&A...657A..54B viz 735       D S   X C       15 87 68 Gaia early DR3 systemic motions of Local Group dwarf galaxies and orbital properties with a massive Large Magellanic Cloud. BATTAGLIA G., TAIBI S., THOMAS G.F., et al.
2022ApJ...925....6F 90           X         2 9 6 Metallicity Distribution Function of the Eridanus II Ultra-faint Dwarf Galaxy from Hubble Space Telescope Narrowband Imaging. FU S.W., WEISZ D.R., STARKENBURG E., et al.
2022MNRAS.510.3531B 376       D S   X   F     7 66 9 Stellar mass segregation as separating classifier between globular clusters and ultrafaint dwarf galaxies. BAUMGARDT H., FALLER J., MEINHOLD N., et al.
2022MNRAS.510.3575H 45           X         1 26 1 Identifying RR Lyrae in the ZTF DR3 data set. HUANG K.-W. and KOPOSOV S.E.
2022MNRAS.511..943C 62           X         1 2 35 The diversity of core-halo structure in the fuzzy dark matter model. CHAN H.Y.J., FERREIRA E.G.M., MAY S., et al.
2022MNRAS.511.1757T 90             C       2 6 ~ Constraining ultra light dark matter with the Galactic nuclear star cluster. TOGUZ F., KAWATA D., SEABROKE G., et al.
2022MNRAS.511.2610C 90           X         2 79 27 Measuring the Milky Way mass distribution in the presence of the LMC. CORREA MAGNUS L. and VASILIEV E.
2022ApJ...926..106M 45           X         1 24 ~ Estimate of the Mass and Radial Profile of the Orphan-Chenab Stream's Dwarf-galaxy Progenitor Using MENDELSOHN E.J., NEWBERG H.J., SHELTON S., et al.
2022MNRAS.511.5042S 58           X         1 1 13 Magnetic fields in the formation of the first stars - II. Results. STACY A., McKEE C.F., LEE A.T., et al.
2022ApJ...928...30L 134           X         3 53 46 S5: The Orbital and Chemical Properties of One Dozen Stellar Streams. LI T.S., JI A.P., PACE A.B., et al.
2022MNRAS.513..439D 56           X         1 6 70 Galaxy And Mass Assembly (GAMA): Data Release 4 and the z < 0.1 total and z < 0.08 morphological galaxy stellar mass functions. DRIVER S.P., BELLSTEDT S., ROBOTHAM A.S.G., et al.
2022ApJ...929L..24L 45           X         1 2 ~ Effective Self-interaction of Dark Matter from Gravitational Scattering. LOEB A.
2022ApJ...930...54S 90           X         2 4 2 A Statistical Detection of Wide Binary Systems in the Ultrafaint Dwarf Galaxy Reticulum II. SAFARZADEH M., SIMON J.D. and LOEB A.
2022MNRAS.513.4968R 108       D     X         3 52 8 Sizing from the smallest scales: the mass of the Milky Way. RODRIGUEZ WIMBERLY M.K., COOPER M.C., BAXTER D.C., et al.
2022AJ....164...48L 18       D               1 23 ~ Satellite Galaxies' Drag on Field Stars in the Milky Way. LIANG X., LIU J., ZHAO J., et al.
2022ApJS..262....8P viz 45           X         1 525 5 Mining S-PLUS for Metal-poor Stars in the Milky Way. PLACCO V.M., ALMEIDA-FERNANDES F., ARENTSEN A., et al.
2022ApJ...938L...4T 986           X C       21 4 ~ Current and Future γ-Ray Searches for Dark Matter Annihilation Beyond the Unitarity Limit. TAK D., BAUMGART M., RODD N.L., et al.
2022MNRAS.516.5389G 18       D               1 7 ~ Asymptotic model for a bi-component system with a very large mass ratio mh/ml of their constituting particles. GOMEZ-LEYTON Y.J. and VELAZQUEZ L.
2022ApJ...939....3P 45           X         1 14 2 The Impact of Binaries on the Dynamical Mass Estimate of Dwarf Galaxies. PIANTA C., CAPUZZO-DOLCETTA R. and CARRARO G.
2022ApJ...939...41C 45           X         1 79 6 Magellan/IMACS Spectroscopy of Grus. I. A Low Metallicity Ultra-faint Dwarf Galaxy. CHITI A., SIMON J.D., FREBEL A., et al.
2022MNRAS.517.6140C 18       D               1 30 ~ Comparing simulated Milky Way satellite galaxies with observations using unsupervised clustering. CHEN L.-H., HARTWIG T., KLESSEN R.S., et al.
2022NatAs...6.1317C 18       D               1 37 9 Gamma-ray emission from the Sagittarius dwarf spheroidal galaxy due to millisecond pulsars. CROCKER R.M., MACIAS O., MACKEY D., et al.
2022ApJ...940..127C 90           X         2 20 1 A Ghost in Boötes: The Least-Luminous Disrupted Dwarf Galaxy. CHANDRA V., CONROY C., CALDWELL N., et al.
2022ApJ...940..136P 376       D     X C       8 68 33 Proper Motions, Orbits, and Tidal Influences of Milky Way Dwarf Spheroidal Galaxies. PACE A.B., ERKAL D. and LI T.S.
2023MNRAS.518.2418S 94           X         2 18 19 Motivations for a large self-interacting dark matter cross-section from Milky Way satellites. SILVERMAN M., BULLOCK J.S., KAPLINGHAT M., et al.
2023MNRAS.518.3746B 93           X         2 29 ~ Gaia DR3 and nearby galaxies: where do foregrounds matter? BARMBY P.
2023A&A...669A..94S 93             C       1 16 6 How much metal did the first stars provide to the ultra-faint dwarfs? SANATI M., JEANQUARTIER F., REVAZ Y., et al.
2023AJ....165...55C viz 373           X C       7 30 12 Detailed Chemical Abundances of Stars in the Outskirts of the Tucana II Ultrafaint Dwarf Galaxy. CHITI A., FREBEL A., JI A.P., et al.
2023ApJ...943..121G 47           X         1 2 ~ Forecasts on the Dark Matter Density Profiles of Dwarf Spheroidal Galaxies with Current and Future Kinematic Observations. GUERRA J., GEHA M. and STRIGARI L.E.
2023MNRAS.520.1704B 19       D               1 49 1 Determining satellite infall times using machine learning. BARMENTLOO S. and CAUTUN M.
2023ApJ...945...12G 140           X C       2 19 2 Treasure Maps for Detections of Extreme Energy Cosmic Rays. GLOBUS N., FEDYNITCH A. and BLANDFORD R.D.
2023ApJ...945...25A 65       D     X         2 41 2 Searching for TeV Dark Matter in Irregular Dwarf Galaxies with HAWC Observatory. ALFARO R., ALVAREZ C., ARTEAGA-VELAZQUEZ J.C., et al.
2023MNRAS.520.5521S 47           X         1 13 ~ Star formation histories of dwarf spheroidal and dwarf elliptical galaxies in the local Universe. SEO M. and ANN H.B.
2023ApJ...945..101A 439       D     X C       9 7 3 Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS. ACHARYYA A., ARCHER A., BANGALE P., et al.
2023MNRAS.521.3540M 19       D               1 76 4 The LMC impact on the kinematics of the Milky Way satellites: clues from the running solar apex. MAKAROV D., KHOPERSKOV S., MAKAROV D., et al.
2023MNRAS.521.5699P 47           X         1 10 2 On the dearth of C-enhanced metal-poor stars in the galactic bulge. PAGNINI G., SALVADORI S., ROSSI M., et al.
2023ApJ...948..123H 280           X         6 24 1 On the Hunt for the Origins of the Orphan-Chenab Stream: Detailed Element Abundances with APOGEE and Gaia. HAWKINS K., PRICE-WHELAN A.M., SHEFFIELD A.A., et al.
2023MNRAS.522..130R 19       D               2 73 1 The SAMI-Fornax Dwarfs Survey - III. Evolution of [α/Fe] in dwarfs, from Galaxy Clusters to the Local Group. ROMERO-GOMEZ J., PELETIER R.F., AGUERRI J.A.L., et al.
2023ApJ...949...68D 140           X         3 3 1 On the Dynamical Heating of Dwarf Galaxies in a Fuzzy Dark Matter Halo. DUTTA CHOWDHURY D., VAN DEN BOSCH F.C., VAN DOKKUM P., et al.
2023ApJ...950..167B 47           X         1 58 1 Spectroscopic Analysis of Milky Way Outer Halo Satellites: Aquarius II and Boötes II. BRUCE J., LI T.S., PACE A.B., et al.
2023MNRAS.518.4557S 327           X C       6 35 9 The Pristine Inner Galaxy Survey (PIGS) - V. A chemo-dynamical investigation of the early assembly of the Milky Way with the most metal-poor stars in the bulge. SESTITO F., VENN K.A., ARENTSEN A., et al.
2023MNRAS.519..384E 355     A     X C F     6 25 5 Dark matter halo cores and the tidal survival of Milky Way satellites. ERRANI R., NAVARRO J.F., PENARRUBIA J., et al.
2023MNRAS.519..871Z 19       D               1 41 4 Photometric mass estimation and the stellar mass-halo mass relation for low mass galaxies. ZARITSKY D. and BEHROOZI P.
2023MNRAS.519.1349W 420           X C F     7 19 10 The Cosmic Hunt for members in the outskirts of ultra-faint dwarf galaxies: Ursa Major I, Coma Berenices, and Boötes I. WALLER F., VENN K.A., SESTITO F., et al.
2023MNRAS.519.4467J 93               F     1 41 3 Chemical abundances of the Typhon stellar stream. JI A.P., NAIDU R.P., BRAUER K., et al.
2023MNRAS.520.1567L 19       D               1 43 3 Matching the mass function of Milky Way satellites in competing dark matter models. LOVELL M.R. and ZAVALA J.
2023MNRAS.523.3393K 187           X   F     3 46 9 Dark matter profiles of SPARC galaxies: a challenge to fuzzy dark matter. KHELASHVILI M., RUDAKOVSKYI A. and HOSSENFELDER S.
2023ApJ...951..149O 47           X         1 6 ~ Flares, Warps, Truncations, and Satellite: The Ultra-thin Galaxy UGC 11859. OSSA-FUENTES L., BORLAFF A.S., BECKMAN J.E., et al.
2023MNRAS.524.4688F 19       D               1 16 ~ The impact of rare events on the chemical enrichment in dwarf galaxies. FUKAGAWA N. and PRANTZOS N.
2023ApJ...953..185H 1073     A D     X C       23 30 ~ Dark Matter Halo Properties of the Galactic Dwarf Satellites: Implication for Chemo-dynamical Evolution of the Satellites and a Challenge to Lambda Cold Dark Matter. HAYASHI K., HIRAI Y., CHIBA M., et al.
2023A&A...676A..63B 93           X         2 27 ~ Confronting fuzzy dark matter with the rotation curves of nearby dwarf irregular galaxies. BANARES-HERNANDEZ A., CASTILLO A., MARTIN CAMALICH J., et al.
2023AJ....166...76S 47           X         1 13 ~ Discovery of a New Local Group Dwarf Galaxy Candidate in UNIONS: Boötes V. SMITH S.E.T., JENSEN J., ROEDIGER J., et al.
2023MNRAS.525..325K 19       D               1 55 ~ Densities and mass assembly histories of the Milky Way satellites are not a challenge to ΛCDM. KRAVTSOV A. and WU Z.
2023ApJ...954..163F 93           X         2 9 ~ Structure, Kinematics, and Observability of the Large Magellanic Cloud's Dynamical Friction Wake in Cold versus Fuzzy Dark Matter. FOOTE H.R., BESLA G., MOCZ P., et al.
2023MNRAS.525.2875S 47           X         1 12 ~ The extended 'stellar halo' of the Ursa Minor dwarf galaxy. SESTITO F., ZAREMBA D., VENN K.A., et al.
2020RNAAS...4..229M 145       D     X         4 63 ~ Updated Proper Motions for Local Group Dwarf Galaxies Using Gaia Early Data Release 3. McCONNACHIE A.W. and VENN K.A.
2023A&A...677A..95A 47           X         1 17 ~ Binary star population of the Sculptor dwarf galaxy. ARROYO-POLONIO J.M., BATTAGLIA G., THOMAS G.F., et al.
2023ApJ...955...17H 47           X         1 19 ~ GHOST Commissioning Science Results: Identifying a New Chemically Peculiar Star in Reticulum II. HAYES C.R., VENN K.A., WALLER F., et al.
2023ApJ...955...22B 19       D               1 98 ~ The HERBAL Model: A Hierarchical Errors-in-variables Bayesian Lognormal Hurdle Model for Galactic Globular Cluster Populations. BEREK S.C., EADIE G.M., SPEAGLE J.S., et al.
2023ApJS..269....3M 93             C       1 83 ~ Siena Galaxy Atlas 2020. MOUSTAKAS J., LANG D., DEY A., et al.
2023ApJ...958..167F 1185       D S   X C       24 25 ~ Metallicity Distribution Functions of 13 Ultra-faint Dwarf Galaxy Candidates from Hubble Space Telescope Narrowband Imaging. FU S.W., WEISZ D.R., STARKENBURG E., et al.
2023A&A...679A...2R 47           X         1 13 ~ The compactness of ultra-faint dwarf galaxies: A new challenge? REVAZ Y.
2023ApJ...959..141W 47           X         1 39 ~ Chemical Analysis of the Brightest Star of the Cetus II Ultrafaint Dwarf Galaxy Candidate. WEBBER K.B., HANSEN T.T., MARSHALL J.L., et al.
2024AJ....167...57T 70       D     X         2 58 ~ Extended Stellar Populations in Ultrafaint Dwarf Galaxies. TAU E.A., VIVAS A.K. and MARTINEZ-VAZQUEZ C.E.
2024A&A...681A..73T 70       D     X         2 56 ~ A portrait of the vast polar structure as a young phenomenon: Hints from its member satellites. TAIBI S., PAWLOWSKI M.S., KHOPERSKOV S., et al.
2024ApJ...961...92S 100           X         2 57 ~ The Discovery of the Faintest Known Milky Way Satellite Using UNIONS. SMITH S.E.T., CERNY W., HAYES C.R., et al.
2024ApJ...961..234H 50           X         1 16 ~ Reading between the (Spectral) Lines: Magellan/IMACS Spectroscopy of the Ultrafaint Dwarf Galaxies Eridanus IV and Centaurus I. HEIGER M.E., LI T.S., PACE A.B., et al.

goto View the references in ADSLimited to 100