NAME Andromeda XXX , the SIMBAD biblio

NAME Andromeda XXX , the SIMBAD biblio (55 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST23:28:15


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
2012ApJ...758...11C viz 234     A D     X C       6 34 137 A bayesian approach to locating the red giant branch tip magnitude. II. Distances to the satellites of M31. CONN A.R., IBATA R.A., LEWIS G.F., et al.
2013Natur.493...62I 8 23 409 A vast, thin plane of corotating dwarf galaxies orbiting the Andromeda galaxy. IBATA R.A., LEWIS G.F., CONN A.R., et al.
2013ApJ...763....4L 40           X         1 21 48 PAndAS in the mist: the stellar and gaseous mass within the halos of M31 and M33. LEWIS G.F., BRAUN R., McCONNACHIE A.W., et al.
2013MNRAS.430..971W 351     A D     X         10 39 19 A census of orbital properties of the M31 satellites. WATKINS L.L., EVANS N.W. and VAN DE VEN G.
2013AJ....145..101K viz 16       D               1 873 387 Updated nearby galaxy catalog. KARACHENTSEV I.D., MAKAROV D.I. and KAISINA E.I.
2013ApJ...766..120C 703           X C       17 36 131 The three-dimensional structure of the M31 satellite system: strong evidence for an inhomogeneous distribution of satellites. CONN A.R., LEWIS G.F., IBATA R.A., et al.
2013MNRAS.431.3543H 79           X         2 25 98 The vast thin plane of M31 corotating dwarfs: an additional fossil signature of the M31 merger and of its considerable impact in the whole Local Group. HAMMER F., YANG Y., FOUQUET S., et al.
2013ApJ...768..172C viz 445       D S   X         11 324 151 A kinematic study of the Andromeda dwarf spheroidal system. COLLINS M.L.M., CHAPMAN S.C., RICH R.M., et al.
2013ApJ...775..139M 328       D     X C       8 28 51 Andromeda dwarfs in light of MOND. II. Testing prior predictions. McGAUGH S. and MILGROM M.
2013ApJ...776...80M viz 16       D               2 57 82 The PAndAS view of the Andromeda satellite system. I. A bayesian search for dwarf galaxies using spatial and color-magnitude information. MARTIN N.F., IBATA R.A., McCONNACHIE A.W., et al.
2013MNRAS.435..928B 39           X         1 22 18 Triaxial cosmological haloes and the disc of satellites. BOWDEN A., EVANS N.W. and BELOKUROV V.
2013MNRAS.435.1928P viz 289       D     X C       7 86 140 Dwarf galaxy planes: the discovery of symmetric structures in the Local Group. PAWLOWSKI M.S., KROUPA P. and JERJEN H.
2013MNRAS.435.3654V 117           X         3 29 17 Newly discovered globular clusters in NGC 147 and NGC 185 from PAndAS. VELJANOSKI J., FERGUSON A.M.N., HUXOR A.P., et al.
2013MNRAS.436.2096S 328       D     X   F     8 80 57 The formation of local group planes of galaxies. SHAYA E.J. and TULLY R.B.
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.
2014ApJ...783....7C 55       D     X         2 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.439.1015K viz 16       D               1 909 144 The dynamics of isolated Local Group galaxies. KIRBY E.N., BULLOCK J.S., BOYLAN-KOLCHIN M., et al.
2014ApJ...784...76Y viz 16       D               1 627 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.
2014MNRAS.441.2124B 40           X         1 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.
2015MNRAS.447.1112B 79               F     1 42 27 Galactic tides and the shape and orientation of dwarf galaxy satellites. BARBER C., STARKENBURG E., NAVARRO J.F., et al.
2015MNRAS.450.1409S 95       D     X         3 28 10 The intrinsic ellipticity of dwarf spheroidal galaxies: constraints from the Andromeda system. SALOMON J.-B., IBATA R.A., MARTIN N.F., et al.
2015MNRAS.450.3920B 95       D         F     3 59 55 Expanded haloes, abundance matching and too-big-to-fail in the Local Group. BROOK C.B. and DI CINTIO A.
2015MNRAS.454.2039F 81           X         2 25 108 Taking care of business in a flash : constraining the time-scale for low-mass satellite quenching with ELVIS. FILLINGHAM S.P., COOPER M.C., WHEELER C., et al.
2016MNRAS.456.1654A 2127 T K A D     X C       52 17 5 NGC 147, NGC 185 and
CassII: a genetic approach to orbital properties, star formation and tidal debris.
ARIAS V., GUGLIELMO M., FERNANDO N., et al.
2016MNRAS.456.4432S 80           X         2 43 23 The transverse velocity of the Andromeda system, derived from the M31 satellite population. SALOMON J.-B., IBATA R.A., FAMAEY B., et al.
2016ApJ...824...10F 40           X         1 50 45 The Next Generation Virgo cluster Survey (NGVS). XIII. The luminosity and mass function of galaxies in the core of the Virgo cluster and the contribution from disrupted satellites. FERRARESE L., COTE P., SANCHEZ-JANSSEN R., et al.
2016MNRAS.462.3221A 40           X         1 27 6 The potential role of NGC 205 in generating Andromeda's vast thin corotating plane of satellite galaxies. ANGUS G.W., COPPIN P., GENTILE G., et al.
2016ApJ...833..167M viz 765     A D S   X C       18 35 104 The PAndAS view of the Andromeda satellite system. II. Detailed properties of 23 M31 dwarf spheroidal galaxies. MARTIN N.F., IBATA R.A., LEWIS G.F., 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...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.
2017MNRAS.464.3108G 99       D         F     2 39 107 Organized chaos: scatter in the relation between stellar mass and halo mass in small galaxies. GARRISON-KIMMEL S., BULLOCK J.S., BOYLAN-KOLCHIN M., et al.
2017ApJ...850...16M 138       D     X         4 40 13 A rogues' gallery of Andromeda's dwarf galaxies. I. A predominance of red horizontal branches. MARTIN N.F., WEISZ D.R., ALBERS S.M., 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.
2018A&A...609A..11K 99       D       C       2 229 7 Cosmic flow around local massive galaxies. KASHIBADZE O.G. and KARACHENTSEV I.D.
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.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.
2018ApJ...868...55M viz 263       D     X C       6 170 116 The large-scale structure of the halo of the Andromeda galaxy. II. Hierarchical structure in the Pan-Andromeda Archaeological Survey. McCONNACHIE A.W., IBATA R., MARTIN N., 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.
2019MNRAS.487.1380G 102       D         F     3 59 147 The Local Group on FIRE: dwarf galaxy populations across a suite of hydrodynamic simulations. GARRISON-KIMMEL S., HOPKINS P.F., WETZEL A., et al.
2019MNRAS.488.3231H 17       D               1 22 ~ Proper motions of the satellites of M31. HODKINSON B. and SCHOLTZ J.
2019MNRAS.489..763W 59       D     X         2 28 ~ A rogues gallery of Andromeda's dwarf galaxies - II. Precise distances to 17 faint satellites. WEISZ D.R., DOLPHIN A.E., MARTIN N.F., et al.
2019ApJ...885L...8W 17       D               1 30 25 Comparing the quenching times of faint M31 and Milky Way satellite galaxies. WEISZ D.R., MARTIN N.F., DOLPHIN A.E., et al.
2020MNRAS.492..456W 85               F     2 35 ~ On the origin of the asymmetric dwarf galaxy distribution around andromeda. WAN Z., OLIVER W.H., LEWIS G.F., et al.
2020ApJ...900....9L viz 145       D     X         4 85 47 Project AMIGA: the circumgalactic medium of Andromeda. LEHNER N., BEREK S.C., HOWK J.C., 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.
2021ApJ...908..109C 17       D               1 149 47 Luminosity functions and host-to-host scatter of dwarf satellite systems in the Local Volume. CARLSTEN S.G., GREENE J.E., PETER A.H.G., et al.
2021ApJ...913...53P viz 17       D               2 123 72 The gas content and stripping of Local Group dwarf galaxies. PUTMAN M.E., ZHENG Y., PRICE-WHELAN A.M., et al.
2021MNRAS.505..783F 45           X         1 17 33 Can cosmological simulations capture the diverse satellite populations of observed Milky Way analogues? FONT A.S., McCARTHY I.G. and BELOKUROV V.
2021MNRAS.506.2766H 17       D               1 56 3 Solo dwarfs IV: comparing and contrasting satellite and isolated dwarf galaxies in the Local Group. HIGGS C.R. and McCONNACHIE A.W.
2021MNRAS.507.3246H 17       D               1 4479 15 The nucleation fraction of local volume galaxies. HOYER N., NEUMAYER N., GEORGIEV I.Y., et al.
2021ApJ...923...42P 104       D         F     2 36 8 On the co-orbitation of Satellite galaxies along the Great Plane of Andromeda: NGC 147, NGC 185, and expectations from cosmological simulations. PAWLOWSKI M.S. and SOHN S.T.
2022ApJ...938..101S 152       D     X         4 47 16 The Hubble Space Telescope Survey of M31 Satellite Galaxies. I. RR Lyrae-based Distances and Refined 3D Geometric Structure. SAVINO A., WEISZ D.R., SKILLMAN E.D., et al.
2023A&A...673A.160M 140           X         3 19 ~ A possible dwarf galaxy satellite-of-satellite problem in ΛCDM. MULLER O., HEESTERS N., JERJEN H., et al.
2023MNRAS.520..897O 19       D               1 68 ~ Predictions on the stellar-to-halo mass relation in the dwarf regime using the empirical model for galaxy formation EMERGE. O'LEARY J.A., STEINWANDEL U.P., MOSTER B.P., et al.
2023ApJ...952...72D 19       D               1 33 2 The PAndAS View of the Andromeda Satellite System. IV. Global Properties. DOLIVA-DOLINSKY A., MARTIN N.F., YUAN Z., et al.

goto View the references in ADS