[CCE98] 1-46 , the SIMBAD biblio

[CCE98] 1-46 , the SIMBAD biblio (50 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.06.01CEST10:54:48


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
1996MNRAS.280.1071L 132 118 An improved HR diagram for Chamaeleon I pre-main-sequence stars. LAWSON W.A., FEIGELSON E.D. and HUENEMOERDER D.P.
1998A&A...338..977C 188 66 New young stellar object candidates in the Chamaeleon I molecular cloud discovered by DENIS. CAMBRESY L., COPET E., EPCHTEIN N., et al.
2001AJ....121.2673K viz 129 43 A 3 µm survey of the Chamaeleon I dark cloud. KENYON S.J. and GOMEZ M.
2002AJ....124.1001C viz 15       D               1 259 58 Near-infrared photometric variability of stars toward the Chamaeleon I molecular cloud. CARPENTER J.M., HILLENBRAND L.A., SKRUTSKIE M.F., et al.
2003A&A...404..913S viz 1239 88 Formation scenarios for the young stellar associations between galactic longitudes l=280°-360°. SARTORI M.J., LEPINE J.R.D. and DIAS W.S.
2004A&A...423.1029S viz 54 31 XMM-Newton probes the stellar population in Chamaeleon I South. STELZER B., MICELA G. and NEUHAEUSER R.
2004ApJ...602..816L viz 15       D               2 295 186 A census of the Chamaeleon I star-forming region. LUHMAN K.L.
2007ApJ...662..413K viz 15       D               1 822 84 The role of mass and environment in multiple-star formation: a 2MASS survey of wide multiplicity in three young associations. KRAUS A.L. and HILLENBRAND L.A.
2007ApJS..173..104L viz 15       D               380 240 The stellar population of the Chamaeleon I star-forming region. LUHMAN K.L.
2007ApJ...670.1337D 92 38 A comprehensive view of circumstellar disks in Chamaeleon I: infrared excess, accretion signatures, and binarity. DAMJANOV I., JAYAWARDHANA R., SCHOLZ A., et al.
2008ApJ...675.1375L viz 91       D     X         3 89 180 The disk population of the Chamaeleon I star-forming region. LUHMAN K.L., ALLEN L.E., ALLEN P.R., et al.
2008ApJ...683..844L 15       D               1 140 73 A multiplicity census of young stars in Chamaeleon I. LAFRENIERE D., JAYAWARDHANA R., BRANDEKER A., 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.
2009ApJ...700.1017K 319       D     X C F     7 26 70 Mid-infrared spectra of transitional disks in the Chamaeleon I cloud. KIM K.H., WATSON D.M., MANOJ P., 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.
2010ApJS..186..111L viz 76           X         2 441 328 The disk population of the Taurus star-forming region. LUHMAN K.L., ALLEN P.R., ESPAILLAT C., et al.
2010ApJ...720.1668S 41           X         1 4 30 Stellar-mass-dependent disk structure in coeval planet-forming disks. SZUCS L., APAI D., PASCUCCI I., et al.
2011ApJ...727...64K viz 15       D               1 1045 99 Young stellar groups and their most massive stars. KIRK H. and MYERS P.C.
2011ApJS..193...11M 515       D     X C       13 112 50 Spitzer infrared spectrograph survey of young stars in the Chamaeleon I star-forming region. MANOJ P., KIM K.H., FURLAN E., et al.
2012ApJ...757..141K viz 15       D               1 506 56 Multiple star formation to the bottom of the initial mass function. KRAUS A.L. and HILLENBRAND L.A.
2012ApJ...759...47S 15       D               2 82 6 Observational constraints on the stellar radiation field impinging on transitional disk atmospheres. SZULAGYI J., PASCUCCI I., ABRAHAM P., et al.
2012MNRAS.427.1344C 15       D               3 31 49 LAMP: the long-term accretion monitoring programme of T Tauri stars in Chamaeleon I. COSTIGAN G., SCHOLZ A., STELZER B., et al.
2013A&A...552A.115R 328       D   O X C       8 22 11 Identification of transitional disks in Chamaeleon with Herschel. RIBAS A., MERIN B., BOUY H., et al.
2013ApJ...769..149K viz 94       D       C       6 134 44 Transitional disks and their origins: an infrared spectroscopic survey of Orion A. KIM K.H., WATSON D.M., MANOJ P., et al.
2014A&A...568A..18M 804       D     X C       20 38 113 Gas content of transitional disks: a VLT/X-Shooter study of accretion and winds. MANARA C.F., TESTI L., NATTA A., et al.
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.
2016A&A...585A.136M 41           X         1 55 84 X-Shooter study of accretion in Chamaeleon I. MANARA C.F., FEDELE D., HERCZEG G.J., et al.
2016A&A...586A..12D 16       D   O           2 57 9 The frequency of accretion disks around single stars: Chamaeleon I. DAEMGEN S., MEYER R.E., JAYAWARDHANA R., et al.
2016A&A...592A.126V viz 297       D S   X         7 237 63 The (w)hole survey: An unbiased sample study of transition disk candidates based on Spitzer catalogs. VAN DER MAREL N., VERHAAR B.W., VAN TERWISGA S., et al.
2016ApJ...831..125P viz 177       D     X         5 427 330 A steeper than linear disk mass-stellar mass scaling relation. PASCUCCI I., TESTI L., HERCZEG G.J., et al.
2017AJ....153..188F viz 16       D               2 810 40 NGC 1980 is not a foreground population of Orion: spectroscopic survey of young stars with low extinction in Orion A. FANG M., KIM J.S., PASCUCCI I., et al.
2017A&A...601A..97S viz 16       D               1 186 19 The Gaia-ESO Survey: Structural and dynamical properties of the young cluster Chamaeleon I. SACCO G.G., SPINA L., RANDICH S., et al.
2017ApJ...844...99L 16       D               2 131 98 An ALMA survey of CO isotopologue emission from protoplanetary disks in Chamaeleon I. LONG F., HERCZEG G.J., PASCUCCI I., et al.
2017AJ....154...46E viz 16       D               1 255 10 A survey for planetary-mass brown dwarfs in the Chamaeleon I star-forming region. ESPLIN T.L., LUHMAN K.L., FAHERTY J.K., et al.
2017A&A...604A.127M 98       D       C       5 108 115 X-shooter study of accretion in Chamaeleon I. II. A steeper increase of accretion with stellar mass for very low-mass stars? MANARA C.F., TESTI L., HERCZEG G.J., et al.
2017ApJ...847...31M viz 16       D               1 174 26 Constraints from dust mass and mass accretion rate measurements on angular momentum transport in protoplanetary disks. MULDERS G.D., PASCUCCI I., MANARA C.F., 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.
2018ApJ...863...61L 223       D     X         6 23 24 An ALMA survey of faint disks in the Chamaeleon I star-forming region: why are some class II disks so faint? LONG F., HERCZEG G.J., PASCUCCI I., et al.
2019A&A...631L...2M 172 49 Constraining disk evolution prescriptions of planet population synthesis models with observed disk masses and accretion rates. MANARA C.F., MORDASINI C., TESTI L., et al.
2020ApJ...895..126H viz 17       D               3 177 62 The evolution of dust disk sizes from a homogeneous analysis of 1-10 Myr old stars. HENDLER N., PASCUCCI I., PINILLA P., et al.
2020MNRAS.496.4701J viz 17       D               1 23794 26 The Gaia-ESO Survey: membership probabilities for stars in 32 open clusters from 3D kinematics. JACKSON R.J., JEFFRIES R.D., WRIGHT N.J., et al.
2020A&A...643A..71G viz 17       D               1 12328 25 The Gaia-ESO Survey: Calibrating the lithium-age relation with open clusters and associations. I. Cluster age range and initial membership selections. GUTIERREZ ALBARRAN M.L., MONTES D., GOMEZ GARRIDO M., et al.
2021A&A...646A..46G viz 17       D               1 243 24 Chamaeleon DANCe. Revisiting the stellar populations of Chamaeleon I and Chamaeleon II with Gaia-DR2 data. GALLI P.A.B., BOUY H., OLIVARES J., 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...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.
2021ApJ...921...72M viz 17       D               1 277 37 Bridging the gap between protoplanetary and debris disks: separate evolution of millimeter and micrometer-sized Dust. MICHEL A., VAN DER MAREL N. and MATTHEWS B.C.
2022MNRAS.511.2453P 18       D               1 817 ~ Taxonomy of protoplanetary discs observed with ALMA. PARKER R., WARD-THOMPSON D. and KIRK J.
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.
2022A&A...666A.121R viz 18       D               1 38011 44 The Gaia-ESO Public Spectroscopic Survey: Implementation, data products, open cluster survey, science, and legacy,. RANDICH S., GILMORE G., MAGRINI L., et al.
2023A&A...676A.129H viz 19       D               1 114943 ~ The Gaia-ESO Survey: Homogenisation of stellar parameters and elemental abundances. HOURIHANE A., FRANCOIS P., WORLEY C.C., et al.

goto View the references in ADS