NAME LDN 1455 IRS 5 , the SIMBAD biblio

NAME LDN 1455 IRS 5 , the SIMBAD biblio (49 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST19:44:11


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Title First 3 Authors
1997AJ....113.1769T 67 35 IRAS sources associated with small nebulae in star forming regions: optical and near infrared images. TAPIA M., PERSI P., BOHIGAS J., et al.
2005A&A...440..151H viz 15       D               112 187 Star formation in Perseus. Clusters, filaments and the conditions for star formation. HATCHELL J., RICHER J.S., FULLER G.A., et al.
2006ApJ...638..293E viz 15       D               151 293 Bolocam survey for 1.1mm dust continuum emission in the c2d Legacy clouds. I. Perseus. ENOCH M.L., YOUNG K.E., GLENN J., et al.
2006ApJ...646.1009K viz 15       D               1 123 186 The large- and small-scale structures of dust in the star-forming Perseus molecular cloud. KIRK H., JOHNSTONE D. and DI FRANCESCO J.
2007ApJ...656..293J 64 100 Current star formation in the Perseus molecular cloud: constraints from unbiased submillimeter and mid-infrared surveys. JORGENSEN J.K., JOHNSTONE D., KIRK H., et al.
2007AJ....133.1560W viz 15       D               72 41 SHARC-II mapping of Spitzer c2d small clouds and cores. WU J., DUNHAM M.M., EVANS II N.J., et al.
2007A&A...468.1009H viz 15       D               123 139 Star formation in Perseus. II. SEDs, classification, and lifetimes. HATCHELL J., FULLER G.A., RICHER J.S., et al.
2007A&A...472..187H viz 90       D     X         3 67 85 Star formation in Perseus. III. Outflows. HATCHELL J., FULLER G.A. and RICHER J.S.
2007ApJ...668.1042K viz 15       D               2 206 132 Dynamics of dense cores in the Perseus molecular cloud. KIRK H., JOHNSTONE D. and TAFALLA M.
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.387..954D viz 203       D     X   F     5 118 40 A shallow though extensive H22.122-µm imaging survey of Taurus-Auriga-Perseus - I. NGC 1333, L1455, L1448 and B1. DAVIS C.J., SCHOLZ P., LUCAS P., et al.
2008ApJ...684.1240E viz 15       D               1 220 274 The mass distribution and lifetime of prestellar cores in Perseus, Serpens, and Ophiuchus. ENOCH M.L., EVANS II N.J., SARGENT A.I., et al.
2008ApJS..179..249D viz 15       D               2 227 239 Identifying the low-luminosity population of embedded protostars in the c2d observations of clouds and cores. DUNHAM M.M., CRAPSI A., EVANS II N.J., et al.
2009ApJ...692..973E viz 15       D               1 165 315 Properties of the youngest protostars in Perseus, Serpens, and Ophiuchus. ENOCH M.L., EVANS N.J., SARGENT A.I., et al.
2009ApJ...693.1803S 243       D     X   F     6 67 0 XMM observations of two quadrupolar outflows. SIMON T.
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.
2009ApJS..182..143M viz 182 170 The legacy of SCUPOL: 850 µm imaging polarimetry from 1997 to 2005. MATTHEWS B.C., McPHEE C.A., FISSEL L.M., et al.
2009A&A...502..139H 129       D     X         4 139 27 Star formation in Perseus. V. Outflows detected by HARP. HATCHELL J. and DUNHAM M.M.
2010ApJ...710.1247S viz 15       D               1 761 87 The mass distribution of starless and protostellar cores in Gould Belt clouds. SADAVOY S.I., DI FRANCESCO J., BONTEMPS S., et al.
2012ApJ...758...38K 15       D               1 33 31 CO2 ice toward low-luminosity embedded protostars: evidence for episodic mass accretion via chemical history. KIM H.J., EVANS II N.J., DUNHAM M.M., et al.
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...765...59F 16       D               3 83 13 An analysis of the deuterium fractionation of star-forming cores in the Perseus molecular cloud. FRIESEN R.K., KIRK H.M. and SHIRLEY Y.L.
2014MNRAS.440.3568W 16       D               2 75 7 The James Clerk Maxwell Telescope dense gas survey of the Perseus molecular cloud. WALKER-SMITH S.L., RICHER J.S., BUCKLE J.V., et al.
2014A&A...572A...9K 134       D     X         4 54 27 Shockingly low water abundances in Herschel/PACS observations of low-mass protostars in Perseus. KARSKA A., KRISTENSEN L.E., VAN DISHOECK E.F., et al.
2015ApJ...802..126H 413       D     X         11 38 6 Properties of the molecular cores of low luminosity objects. HSIEH T.-H., LAI S.-P., BELLOCHE A., et al.
2015AJ....150...40Y viz 16       D               1 390 18 The Spitzer c2d survey of large, nearby, interstellar clouds. XII. The Perseus YSO population as observed with IRAC and MIPS. YOUNG K.E., YOUNG C.H., LAI S.-P., 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.
2015ApJ...807...27C viz 16       D               7 4784 27 IN-SYNC. III. The dynamical state of IC 348 - a super-virial velocity dispersion and a puzzling sign of convergence. COTTAAR M., COVEY K.R., FOSTER J.B., et al.
2016ApJ...818...73T viz 17       D               1 145 206 The VLA Nascent Disk and Multiplicity survey of Perseus protostars (VANDAM). II. Multiplicity of protostars in the Perseus molecular cloud. TOBIN J.J., LOONEY L.W., LI Z.-Y., et al.
2016A&A...586A..44C 217       D     X         6 97 12 Classifying the embedded young stellar population in Perseus and Taurus and the LOMASS database. CARNEY M.T., YILDIZ U.A., MOTTRAM J.C., et al.
2016ApJ...819..143C viz 16       D               1 98 5 Contraction signatures toward dense cores in the Perseus molecular cloud. CAMPBELL J.L., FRIESEN R.K., MARTIN P.G., et al.
2016ApJ...823..151C 442           X C       10 24 3 Protostar L1455 IRS1: a rotating disk connecting to a filamentary network. CHOU H.-G., YEN H.-W., KOCH P.M., et al.
2016AJ....152...36S viz 16       D               2 219 4 A catalog of low-mass star-forming cores observed with SHARC-II at 350 µm. SURESH A., DUNHAM M.M., ARCE H.G., et al.
2016A&A...592A..56M 86 9 Do siblings always form and evolve simultaneously? Testing the coevality of multiple protostellar systems through SEDs. MURILLO N.M., VAN DISHOECK E.F., TOBIN J.J., et al.
2017AJ....153..173H 16       D               1 34 2 Widening of protostellar outflows: an infrared outflow survey in low-luminosity objects. HSIEH T.-H., LAI S.-P. and BELLOCHE A.
2017AJ....153..214M viz 16       D               2 312 3 An estimation of the star formation rate in the Perseus complex. MERCIMEK S., MYERS P.C., LEE K.I., et al.
2017MNRAS.469.3881S viz 16       D               4 86 19 Embedded binaries and their dense cores. SADAVOY S.I. and STAHLER S.W.
2017ApJ...851...14J 16       D               1 83 1 IN-SYNC. VII. Evidence for a decreasing spectroscopic binary fraction (from 1 to 100 myr) within the IN-SYNC sample. JAEHNIG K., BIRD J.C., STASSUN K.G., et al.
2018ApJS..237...22S 16       D               4 78 11 Mass Assembly of Stellar Systems and their Evolution with the SMA (MASSES) - 1.3 mm subcompact data release. STEPHENS I.W., DUNHAM M.M., MYERS P.C., et al.
2018ApJ...867...43T 635       D     X         16 49 53 The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) survey of Perseus protostars. VI. Characterizing the formation mechanism for close multiple systems. TOBIN J.J., LOONEY L.W., LI Z.-Y., et al.
2018ApJS..238...19T viz 16       D               2 176 106 The VLA Nascent Disk and Multiplicity survey of Perseus protostars (VANDAM). IV. Free-free emission from protostars: links to infrared properties, outflow tracers, and protostellar disk masses. TYCHONIEC L., TOBIN J.J., KARSKA A., et al.
2019AJ....157..196K viz 17       D               1 12851 76 Close companions around young stars. KOUNKEL M., COVEY K., MOE M., et al.
2019ApJ...879...69T viz 17       D               1 222609 141 The Payne: self-consistent ab initio fitting of stellar spectra. TING Y.-S., CONROY C., RIX H.-W., et al.
2019ApJ...884..149H 17       D               4 59 52 Chronology of episodic accretion in protostars-an ALMA survey of the CO and H2O snowlines. HSIEH T.-H., MURILLO N.M., BELLOCHE A., et al.
2019ApJS..245...21S 17       D               7 81 18 Mass Assembly of Stellar Systems and their Evolution with the SMA (MASSES) - Full data release. STEPHENS I.W., BOURKE T.L., DUNHAM M.M., et al.
2021A&A...650A.173S viz 17       D               1 120 7 Evolution of the atomic component in protostellar outflows. SPERLING T., EISLOFFEL J., FISCHER C., 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.
2022ApJ...925...39T viz 18       D               2 405 20 The VLA/ALMA Nascent Disk And Multiplicity (VANDAM) Survey of Orion Protostars. V. A Characterization of Protostellar Multiplicity. TOBIN J.J., OFFNER S.S.R., KRATTER K.M., et al.
2022ApJ...927...88H 18       D               1 58 4 Evolution and Kinematics of Protostellar Envelopes in the Perseus Molecular Cloud. HEIMSOTH D.J., STEPHENS I.W., ARCE H.G., et al.

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