Elia 2-20 , the SIMBAD biblio

Elia 2-20 , the SIMBAD biblio (119 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.24CEST18:27:52


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Title First 3 Authors
1975ApJ...197...77V 35 183 Futher study of the stellar cluster embedded in the Ophiuchus dark cloud complex. VRBA F.J., STROM K.M., STROM S.E., et al.
1977A&A....56..323C 27 20 On the infrared sources in the Ophiuchus dark cloud region. CHINI R., ELSAESSER H., HELEFE H., et al.
1978ApJ...224..453E 108 285 An infrared study of the Ophiuchus dark cloud. ELIAS J.H.
1981A&A....99..346C 37 115 Multicolor photometry of stars in the Ophiuchus dark cloud region. CHINI R.
1983ApJ...269..182M 68 332 Einstein observations of the rho Ophiuchi dark cloud: an X-ray christmas tree. MONTMERLE T., KOCH-MIRAMOND L., FALGARONE E., et al.
1989ApJ...340..823W 150 434 IRAS observations of the rho Ophiuchi infrared cluster : spectral energy distributions and luminosity function. WILKING B.A., LADA C.J. and YOUNG E.T.
1990ApJ...365..269L 42 143 Cold DCO+ cores and protostars in the warm rho Ophiuchi cloud. LOREN R.B., WOOTTEN A. and WILKING B.A.
1990RMxAA..21..356G 78 5 The luminosity of the stars embedded in the Chamaeleon I and in the rho Ophiuchi molecular clouds. GREGORIO-HETEM J.C., LEPINE J.R.D. and ORTIZ R.P.
1991ApJS...75..611C 458 41 Young stellar objects detected by IRAS. CLARK F.O.
1993AJ....105..271W 16 16 Near-infrared, polarimetric imaging of the bipolar lobes of GSS 30: protostellar infall and/or outflow? WEINTRAUB D.A., KASTNER J.H., GRIFFITH L.L., et al.
1994ApJ...420..837A 1 129 539 From T Tauri stars to protostars: circumstellar material and young stellar objects in the rho Ophiuchi cloud. ANDRE P. and MONTMERLE T.
1995ApJ...439..752C 151 196 ROSAT X-ray sources embedded in the rho Ophiuchi cloud core. CASANOVA S., MONTMERLE T., FEIGELSON E.D., et al.
1995ApJ...445..377C 222 293 Bolometric temperature and young stars in the Taurus and Ophiuchus complexes. CHEN H., MYERS P.C., LADD E.F., et al.
1995PASP..107..617P viz 256 4 A catalog of the youngest YSOs and candidate protostars. POLLANEN M.D. and FELDMAN P.A.
1997ApJS..112..109B viz 4491 119 A near-infrared imaging survey of the ρ Ophiuchi cloud core. BARSONY M., KENYON S.J., LADA E.A., et al.
1997PASP..109..549W 41 27 Herbig-haro objects in the rho Ophiuchi cloud. WILKING B.A., SCHWARTZ R.D., FANETTI T.M., et al.
1998AJ....115.2018G 60 21 A survey of optical jets and Herbig-Haro objects in the rho Ophiuchi cloud core. GOMEZ M., WHITNEY B.A. and WOOD K.
1998MNRAS.300..733M 141 79 Spectroscopic classification of X-ray selected stars in the rho Ophiuchi star-forming region and vicinity. MARTIN E.L., MONTMERLE T., GREGORIO-HETEM J., et al.
2000ApJ...545..327J 1 67 313 Large-area mapping at 850 microns. II. Analysis of the clump distribution in the ρ Ophiuchi molecular cloud. JOHNSTONE D., WILSON C.D., MORIARTY-SCHIEVEN G., et al.
2001A&A...372..173B viz 230 244 ISOCAM observations of the ρ Ophiuchi cloud: Luminosity and mass functions of the pre-main sequence embedded cluster. BONTEMPS S., ANDRE P., KAAS A.A., et al.
2003ApJ...591.1064B 114 38 A search for close binaries in the ρ Ophiuchi star-forming region. BARSONY M., KORESKO C. and MATTHEWS K.
2003PASJ...55..653I viz 15       D               211 39 A systematic study of X-ray flares from low-mass young stellar objects in the rho Ophiuchi star-forming region with Chandra. IMANISHI K., NAKAJIMA H., TSUJIMOTO M., et al.
2004A&A...426..171K viz 104 19 An unbiased search for the signatures of protostars in the ρ Ophiuchi A molecular cloud. I. Near-infrared observations. KHANZADYAN T., GREDEL R., SMITH M.D., et al.
2004A&A...427..651D 150 99 Multiple protostellar systems. I. A deep near infrared survey of Taurus and Ophiuchus protostellar objects. DUCHENE G., BOUVIER J., BONTEMPS S., et al.
2004ApJ...613..393G viz 127 69 Simultaneous Chandra and very large array observations of young stars and protostars in ρ Ophiuchus cloud core A. GAGNE M., SKINNER S.L. and DANIEL K.J.
2005A&A...437..611R         O           214 92 A multiplicity survey of the ρ Ophiuchi molecular clouds. RATZKA T., KOEHLER R. and LEINERT C.
2005ApJ...630..381B viz 178 44 A mid-infrared imaging survey of embedded young stellar objects in the ρ Ophiuchi cloud core. BARSONY M., RESSLER M.E. and MARSH K.A.
2006A&A...447..609S viz         O           245 128 An unbiased search for the signatures of protostars in the ρ Ophiuchi molecular cloud. II. Millimetre continuum observations. STANKE T., SMITH M.D., GREDEL R., et al.
2006A&A...449.1077C 253 105 H2 active jets in the near IR as a probe of protostellar evolution. CARATTI O GARATTI A., GIANNINI T., NISINI B., et al.
2006A&A...452..245N viz 1 144 288 Accretion in the ρ-Ophiuchi pre-main sequence stars. NATTA A., TESTI L. and RANDICH S.
2006ApJ...639..275K 1 81 215 c2d Spitzer IRS spectra of disks around T Tauri stars. I. Silicate emission and grain growth. KESSLER-SILACCI J., AUGEREAU J.-C., DULLEMOND C.P., et al.
2006A&A...459..545G 1         O           50 142 C2D Spitzer-IRS spectra of disks around T Tauri stars. II. PAH emission features. GEERS V.C., AUGEREAU J.-C., PONTOPPIDAN K.M., et al.
2007ApJ...671.1800A viz 15       D               1 164 281 A submillimeter view of circumstellar dust disks in ρ Ophiuchi. ANDREWS S.M. and WILLIAMS J.P.
2008ApJ...672.1013P 15       D               1 162 72 The Spitzer c2d survey of large, nearby, interstellar clouds. VII. Ophiuchus observed with MIPS. PADGETT D.L., REBULL L.M., STAPELFELDT K.R., et al.
2008ApJ...674..304W 15       D               1 113 140 The efficiency of grain alignment in dense interstellar clouds: a reassessment of constraints from near-infrared polarization. WHITTET D.C.B., HOUGH J.H., LAZARIAN A., et al.
2008ApJS..175..277D viz 15       D               7166 308 The SCUBA legacy catalogues: submillimeter-continuum objects detected by SCUBA. DI FRANCESCO J., JOHNSTONE D., KIRK H., et al.
2008MNRAS.384..907B 354       D     X C F     8 32 14 Near-infrared imaging polarimetry of young stellar objects in ρ Ophiuchi. BECKFORD A.F., LUCAS P.W., CHRYSOSTOMOU A.C., et al.
2008MNRAS.391..205S 15       D               1 109 51 The initial conditions of star formation - VIII. An observational study of the Ophiuchus cloud L1688 and implications for the pre-stellar core mass function. SIMPSON R.J., NUTTER D. and WARD-THOMPSON D.
2009A&A...495..837G 91       D   O X         3 89 21 Lack of PAH emission toward low-mass embedded young stellar objects. GEERS V.C., VAN DISHOECK E.F., PONTOPPIDAN K.M., et al.
2009ApJS..181..321E viz 15       D               1 1054 1239 The Spitzer c2d legacy results: star-formation rates and efficiencies: evolution and lifetimes. EVANS N.J., DUNHAM M.M., JORGENSEN J.K., et al.
2009ApJ...696L..84C viz 15       D               1 350 134 Primordial circumstellar disks in binary systems: evidence for reduced lifetimes. CIEZA L.A., PADGETT D.L., ALLEN L.E., et al.
2009A&A...498..167V viz 394       D     X C       10 60 86 The nature of the class I population in Ophiuchus as revealed through gas and dust mapping. VAN KEMPEN T.A., VAN DISHOECK E.F., SALTER D.M., et al.
2009A&A...499..799L 76               F     1 13 7 Oxygen in dense interstellar gas. The oxygen abundance of the star forming core ρ Ophiuchi A. LISEAU R. and JUSTTANONT K.
2009ApJ...700.1502A 448       D     X   F     11 16 534 Protoplanetary disk structures in Ophiuchus. ANDREWS S.M., WILNER D.J., HUGHES A.M., et al.
2009ApJS..184...18G viz 15       D               2 2602 566 A Spitzer survey of young stellar clusters within one kiloparsec of the Sun: cluster core extraction and basic structural analysis. GUTERMUTH R.A., MEGEATH S.T., MYERS P.C., et al.
2009ApJ...703.1964F viz 15       D               1 247 125 Disk evolution in the three nearby star-forming regions of Taurus, Chamaeleon, and Ophiuchus. FURLAN E., WATSON D.M., McCLURE M.K., et al.
2009AJ....138.1830Z 432       D     X   F     11 108 14 Outflows in ρ Ophiuchi as seen with the Spitzer infrared array camera. ZHANG M. and WANG H.
2009A&A...507..327O 15       D   O           2 124 89 C2D Spitzer-IRS spectra of disks around T Tauri stars. IV. Crystalline silicates. OLOFSSON J., AUGEREAU J.-C., VAN DISHOECK E.F., et al.
2010ApJS..188...75M 244       D     X         7 167 112 The evolutionary state of the pre-main sequence population in Ophiuchus: a large infrared spectrograph survey. McCLURE M.K., FURLAN E., MANOJ P., et al.
2010ApJ...720..887P 15       D               2 86 171 A Spitzer survey of mid-infrared molecular emission from protoplanetary disks. I. Detection rates. PONTOPPIDAN K.M., SALYK C., BLAKE G.A., et al.
2010A&A...519A...3L 358       D     X C       9 89 14 c2d Spitzer IRS spectra of embedded low-mass young stars: gas-phase emission lines. LAHUIS F., VAN DISHOECK E.F., JORGENSEN J.K., et al.
2010ApJ...723.1241A 21       D               3 25 348 Protoplanetary disk structures in Ophiuchus. II. Extension to fainter sources. ANDREWS S.M., WILNER D.J., HUGHES A.M., et al.
2010A&A...521A..66R 283       D     X C       7 43 171 Dust grain growth in ρ-Ophiuchi protoplanetary disks. RICCI L., TESTI L., NATTA A., et al.
2011A&A...527A.119B 15       D               1 46 62 Single peaked CO emission line profiles from the inner regions of protoplanetary disks. BAST J.E., BROWN J.M., HERCZEG G.J., et al.
2011ApJ...731..130S 15       D               4 75 127 A Spitzer survey of mid-infrared molecular emission from protoplanetary disks. II. Correlations and local thermal equilibrium models. SALYK C., PONTOPPIDAN K.M., BLAKE G.A., et al.
2011MNRAS.417.2253P 38           X         1 22 2 Occurrence of the 2:1 commensurability in a gas giant–super-Earth system. PODLEWSKA-GACA E. and SZUSZKIEWICZ E.
2011ApJ...743..112S 39           X         1 38 83 CO rovibrational emission as a probe of inner disk structure. SALYK C., BLAKE G.A., BOOGERT A.C.A., et al.
2012MNRAS.419..925J 15       D               1 49 15 The relationship between accretion disc age and stellar age and its consequences for protostellar discs. JONES M.G., PRINGLE J.E. and ALEXANDER R.D.
2012A&A...540A...6R 15       D               1 64 49 The effect of local optically thick regions in the long-wave emission of young circumstellar disks. RICCI L., TROTTA F., TESTI L., et al.
2011ARA&A..49...67W 44           X         1 75 989 Protoplanetary disks and their evolution. WILLIAMS J.P. and CIEZA L.A.
2013ApJS..205....5H viz 16       D               1 1329 12 Populations of young stellar objects in nearby molecular clouds. HSIEH T.-H. and LAI S.-P.
2013ApJ...769...21S viz 16       D               1 140 87 Measuring protoplanetary disk accretion with H I pfund β. SALYK C., HERCZEG G.J., BROWN J.M., et al.
2013A&A...553A..41Z 250       D     X         7 134 11 Proper motions of molecular hydrogen outflows in the ρ Ophiuchi molecular cloud. ZHANG M., BRANDNER W., WANG H., et al.
2013ApJ...770...94B 94       D       C       5 97 86 VLT-CRIRES survey of rovibrational CO emission from protoplanetary disks. BROWN J.M., PONTOPPIDAN K.M., VAN DISHOECK E.F., et al.
2014ApJ...782...51A 16       D               1 52 9 On the mid-infrared variability of candidate eruptive variables (EXors): a comparison between Spitzer and WISE data. ANTONIUCCI S., GIANNINI T., LI CAUSI G., et al.
2015MNRAS.447.1996W viz 40           X         1 168 26 The James Clerk Maxwell telescope Legacy Survey of the Gould Belt: a molecular line study of the Ophiuchus molecular cloud. WHITE G.J., DRABEK-MAUNDER E., ROSOLOWSKY E., et al.
2015A&A...578A..31R 254       D     X C       6 40 7 Sensitive survey for 13CO, CN, H2CO, and SO in the disks of T Tauri and Herbig Ae stars. II. Stars in ρ Ophiuchi and upper Scorpius. REBOUSSIN L., GUILLOTEAU S., SIMON M., et al.
2015MNRAS.450.1094P 16       D               1 115 110 The JCMT Gould Belt Survey: first results from the SCUBA-2 observations of the Ophiuchus molecular cloud and a virial analysis of its prestellar core population. PATTLE K., WARD-THOMPSON D., KIRK J.M., et al.
2015A&A...579A..66M viz 16       D               1 188 53 X-Shooter study of accretion in ρ-Ophiucus: very low-mass stars and brown dwarfs. MANARA C.F., TESTI L., NATTA A., et al.
2015ApJ...809..167B 95       D     X         3 46 36 An empirical sequence of disk gap opening revealed by rovibrational CO. BANZATTI A. and PONTOPPIDAN K.M.
2015MNRAS.450.3559N 16       D               2 90 34 Demographics of transition discs in Ophiuchus and Taurus. NAJITA J.R., ANDREWS S.M. and MUZEROLLE J.
2015ApJS..220...11D viz 16       D               1 2988 232 Young stellar objects in the Gould belt. DUNHAM M.M., ALLEN L.E., EVANS II N.J., et al.
2015ApJS..220...17K viz 16       D               1 52 11 Wide-field infrared polarimetry of the ρ Ophiuchi cloud core. KWON J., TAMURA M., HOUGH J.H., et al.
2015PASP..127..961A 80             C       1 30 76 Observations of solids in protoplanetary disks. ANDREWS S.M.
2008yCat.2289....0W viz 15       D               1 314 ~ JKH photometry in LDN 1688. WILKING B.A., GAGNE M. and ALLEN L.E.
2016ApJS..224....2H viz 16       D               1 31767 226 The K2 ecliptic plane input catalog (EPIC) and stellar classifications of 138,600 targets in campaigns 1-8. HUBER D., BRYSON S.T., HAAS M.R., et al.
2017ApJ...834..152B 16       D               2 57 46 The depletion of water during dispersal of planet-forming disk regions. BANZATTI A., PONTOPPIDAN K.M., SALYK C., et al.
2017ApJ...836...41C 545       D     X C       13 42 54 A continuum of accretion burst behavior in young stars observed by K2. CODY A.M., HILLENBRAND L.A., DAVID T.J., et al.
2017ApJ...845...44T viz 18       D               3 61 152 A millimeter continuum size-luminosity relationship for protoplanetary disks. TRIPATHI A., ANDREWS S.M., BIRNSTIEL T., et al.
2017ApJ...849...63R viz 16       D               1 291 41 Far-infrared to millimeter data of protoplanetary disks: dust growth in the Taurus, Ophiuchus, and Chamaeleon I star-forming regions. RIBAS A., ESPAILLAT C.C., MACIAS E., et al.
2018AJ....155..196R viz 16       D               1 2638 104 Rotation of low-mass stars in Upper Scorpius and ρ Ophiuchus with K2. REBULL L.M., STAUFFER J.R., CODY A.M., et al.
2018MNRAS.476.2968H 99       D         F     2 138 15 Discovery of new dipper stars with K2: a window into the inner disc region of T Tauri stars. HEDGES C., HODGKIN S. and KENNEDY G.
2018AJ....156...71C viz 16       D               1 348 82 The many-faceted light curves of young disk-bearing stars in Upper Sco - Oph observed by K2 Campaign 2. CODY A.M. and HILLENBRAND L.A.
2018ApJ...865..157A 16       D               4 118 104 Scaling relations associated with millimeter continuum sizes in protoplanetary disks. ANDREWS S.M., TERRELL M., TRIPATHI A., et al.
2019MNRAS.482..698C viz 17       D               1 160 140 The Ophiuchus DIsc Survey Employing ALMA (ODISEA) - I: project description and continuum images at 28 au resolution. CIEZA L.A., RUIZ-RODRIGUEZ D., HALES A., et al.
2018ApJ...869L..41A viz 38       D               4 30 685 The Disk Substructures at High Angular Resolution Project (DSHARP). I. Motivation, sample, calibration, and overview. ANDREWS S.M., HUANG J., PEREZ L.M., et al.
2018ApJ...869L..42H viz 352       D     X C       8 49 314 The Disk Substructures at High Angular Resolution Project (DSHARP). II. Characteristics of annular substructures. HUANG J., ANDREWS S.M., DULLEMOND C.P., et al.
2018ApJ...869L..47Z 233       D S   X         5 25 298 The Disk Substructures at High Angular Resolution Project (DSHARP). VII. The planet-disk interactions interpretation. ZHANG S., ZHU Z., HUANG J., et al.
2019ApJ...875L...9W viz 17       D               1 274 72 The Ophiuchus DIsk Survey Employing ALMA (ODISEA): disk dust mass distributions across protostellar evolutionary Classes. WILLIAMS J.P., CIEZA L., HALES A., et al.
2019MNRAS.486..453L 20       D               1 35 112 The newborn planet population emerging from ring-like structures in discs. LODATO G., DIPIERRO G., RAGUSA E., et al.
2019A&A...626A..80C viz 17       D               1 558 43 Census of ρ Ophiuchi candidate members from Gaia Data Release 2. CANOVAS H., CANTERO C., CIEZA L., et al.
2019AJ....158...41S 309       D S   X         7 46 ~ A radial velocity survey of embedded sources in the rho Ophiuchi cluster. SULLIVAN T., WILKING B.A., GREENE T.P., et al.
2020ApJ...890L...9P 47           X         1 25 117 Nine localized deviations from Keplerian rotation in the DSHARP circumstellar disks: kinematic evidence for protoplanets carving the gaps. PINTE C., PRICE D.J., MENARD F., et al.
2020MNRAS.492..210V 43           X         1 15 ~ Self-induced dust traps around snow lines in protoplanetary discs. VERICEL A. and GONZALEZ J.-F.
2020A&A...635A.105P 17       D               1 78 47 Hints on the origins of particle traps in protoplanetary disks given by the Mdust - M relation. PINILLA P., PASCUCCI I. and MARINO S.
2020ApJ...895..109F 48           X         1 21 106 Measuring turbulent motion in planet-forming disks with ALMA: a detection around DM Tau and nondetections around MWC 480 and V4046 Sgr. FLAHERTY K., HUGHES A.M., SIMON J.B., et al.
2020A&A...638A..74L viz 17       D               1 545 50 The Herschel view of the dense core population in the Ophiuchus molecular cloud. LADJELATE B., ANDRE P., KONYVES V., et al.
2020ApJ...903..124B 17       D               2 67 38 Hints for icy pebble migration feeding an oxygen-rich chemistry in the inner planet-forming region of disks. BANZATTI A., PASCUCCI I., BOSMAN A.D., et al.
2021MNRAS.501.2934C 323       D     X   F     7 35 53 The Ophiuchus DIsc Survey Employing ALMA (ODISEA) - III. The evolution of substructures in massive discs at 3-5 au resolution. CIEZA L.A., GONZALEZ-RUILOVA C., HALES A.S., et al.
2021ApJ...907...80O 17       D               1 23 17 Ring formation by coagulation of dust aggregates in the early phase of disk evolution around a protostar. OHASHI S., KOBAYASHI H., NAKATANI R., et al.
2021ApJ...910..153M 44           X         1 10 ~ Gravitoviscous protoplanetary disks with a dust component. V. The dynamic model for freeze-out and sublimation of volatiles. MOLYAROVA T., VOROBYOV E.I., AKIMKIN V., et al.
2021AJ....162...28V viz 17       D               1 661 47 A stellar mass dependence of structured disks: a possible link with exoplanet demographics. VAN DER MAREL N. and MULDERS G.D.
2021ApJ...916...51A 280       D     X         7 15 19 Limits on millimeter continuum emission from circumplanetary material in the DSHARP disks. ANDREWS S.M., ELDER W., ZHANG S., et al.
2021ApJ...920..132P viz 17       D               1 5441 33 Quantifying variability of young stellar objects in the mid-infrared over 6 years with the Near-Earth Object Wide-field Infrared Survey Explorer. PARK W., LEE J.-E., CONTRERAS PENA C., et al.
2022MNRAS.509.2780J 377       D     X   F     8 20 24 A super-resolution analysis of the DSHARP survey: substructure is common in the inner 30 au. JENNINGS J., BOOTH R.A., TAZZARI M., et al.
2021ApJ...923..165W 17       D               2 40 4 Architecture of planetary systems predicted from protoplanetary disks observed with ALMA. I. Mass of the possible planets embedded in the dust gap. WANG S., KANAGAWA K.D. and SUTO Y.
2022MNRAS.510.1657C 108       D         F     5 21 2 Testing planet formation from the ultraviolet to the millimetre. CHOKSI N. and CHIANG E.
2022MNRAS.511.2453P 197       D     X C       4 817 ~ Taxonomy of protoplanetary discs observed with ALMA. PARKER R., WARD-THOMPSON D. and KIRK J.
2022AJ....163..174B viz 779       D     X C       17 78 22 Scanning Disk Rings and Winds in CO at 0.01-10 au: A High-resolution M-band Spectroscopy Survey with IRTF-iSHELL. BANZATTI A., ABERNATHY K.M., BRITTAIN S., et al.
2022A&A...663A..98T viz 18       D               1 511 23 The protoplanetary disk population in the ρ-Ophiuchi region L1688 and the time evolution of Class II YSOs. TESTI L., NATTA A., MANARA C.F., et al.
2022ApJ...938...54R 18       D               1 28 1 Discovery of a Brown Dwarf with Quasi-spherical Mass Loss. RUIZ-RODRIGUEZ D.A., CIEZA L.A., CASASSUS S., et al.
2022A&A...667A.163M viz 18       D               1 2829 10 The star formation history of Upper Scorpius and Ophiuchus A 7D picture: positions, kinematics, and dynamical traceback ages. MIRET-ROIG N., GALLI P.A.B., OLIVARES J., et al.
2023AJ....165...72B viz 112       D     X         3 94 5 The Kinematics and Excitation of Infrared Water Vapor Emission from Planet-forming Disks: Results from Spectrally Resolved Surveys and Guidelines for JWST Spectra. BANZATTI A., PONTOPPIDAN K.M., PEREZ CHAVEZ J., et al.
2023ApJ...952..108Z 140           X C       2 50 ~ Substructures in Compact Disks of the Taurus Star-forming Region. ZHANG S., KALSCHEUR M., LONG F., et al.
2023MNRAS.524.3184P 205       D     X   F     4 22 ~ Constraining turbulence in protoplanetary discs using the gap contrast: an application to the DSHARP sample. PIZZATI E., ROSOTTI G.P. and TABONE B.
2023MNRAS.524.3930Z 1418       D     X C F     29 4 ~ Modelling planet-induced gaps and rings in ALMA discs: the role of in-plane radiative diffusion. ZIAMPRAS A., NELSON R.P. and RAFIKOV R.R.
2023MNRAS.525.2806C 19       D               1 19 ~ The maximum accretion rate of a protoplanet: how fast can runaway be? CHOKSI N., CHIANG E., FUNG J., et al.
2023AJ....166..184M 47           X         1 32 ~ Finding Substructures in Protostellar Disks in Ophiuchus. MICHEL A., SADAVOY S.I., SHEEHAN P.D., et al.
2024A&A...682A..55M viz 100               F     27 ~ High-resolution ALMA observations of compact discs in the wide-binary system Sz 65 and Sz 66. MILEY J.M., CARPENTER J., BOOTH R., et al.

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