LDN 1495 , the SIMBAD biblio

LDN 1495 , the SIMBAD biblio (299 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.01.21CET01:25:26


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Title First 3 Authors
2020A&A...635A..34K viz 140           X         3 29 ~ Properties of the dense core population in Orion B as seen by the Herschel Gould Belt survey. KONYVES V., ANDRE P., ARZOUMANIAN D., et al.
2020A&A...637A..92G 47           X         1 31 ~ Angular momentum profiles of Class 0 protostellar envelopes. GAUDEL M., MAURY A.J., BELLOCHE A., et al.
2020A&A...638A..74L viz 47           X         1 35 ~ The Herschel view of the dense core population in the Ophiuchus molecular cloud. LADJELATE B., ANDRE P., KONYVES V., et al.
2020A&A...638A..85R viz 373           X         8 40 ~ A 3D view of the Taurus star-forming region by Gaia and Herschel. Multiple populations related to the filamentary molecular cloud. ROCCATAGLIATA V., FRANCIOSINI E., SACCO G.G., et al.
2020A&A...639A.133S 47           X         1 49 ~ Distance, magnetic field, and kinematics of the filamentary cloud LDN 1157. SHARMA E., GOPINATHAN M., SOAM A., et al.
2020A&A...642A..76Z viz 93           X         2 11 ~ Fragmentation of star-forming filaments in the X-shaped nebula of the California molecular cloud. ZHANG G.-Y., ANDRE P., MEN'SHCHIKOV A., et al.
2020AJ....159..273R 47           X         1 151 ~ Rotation of low-mass stars in Taurus with K2. REBULL L.M., STAUFFER J.R., CODY A.M., et al.
2020ApJ...891...73S 187           X         4 18 ~ Prevalence of complex organic molecules in starless and prestellar cores within the Taurus molecular cloud. SCIBELLI S. and SHIRLEY Y.
2020ApJ...891...84C 140           X         3 14 ~ Velocity-coherent filaments in NGC 1333: evidence for accretion flow? CHEN M.C.-Y., DI FRANCESCO J., ROSOLOWSKY E., et al.
2020ApJ...894L..20X 47           X         1 9 ~ Independent core rotation in massive filaments in Orion. XU X., LI D., DAI Y.S., et al.
2020ApJ...895..119T 47           X         1 21 ~ ALMA ACA and Nobeyama observations of two Orion cores in deuterated molecular lines. TATEMATSU K., LIU T., KIM G., et al.
2020ApJ...898..131L 140           X         3 22 ~ A 3 mm chemical exploration of small organics in class I YSOs. LE GAL R., OBERG K.I., HUANG J., et al.
2020ApJ...899...10T 812       D S   X C       16 39 ~ FRagmentation and evolution of dense cores judged by ALMA (FREJA). I. Overview: inner ∼1000 au structures of Prestellar/Protostellar cores in Taurus. TOKUDA K., FUJISHIRO K., TACHIHARA K., et al.
2020ApJ...904..108M 47           X         1 23 ~ Pre-main-sequence stars in Taurus: comparison of magnetic and nonmagnetic model fits to the low-mass stars. MULLAN D.J. and MacDONALD J.
2020ApJ...905..157V 47           X         1 83 ~ Probing interstellar grain growth through polarimetry in the Taurus cloud complex. VAILLANCOURT J.E., ANDERSSON B.-G., CLEMENS D.P., et al.
2020MNRAS.492.5420S 47           X         1 13 ~ The Hi-GAL catalogue of dusty filamentary structures in the Galactic plane. SCHISANO E., MOLINARI S., ELIA D., et al.
2020MNRAS.494.3675C 47           X         1 9 ~ Self-gravitating filament formation from shocked flows: velocity gradients across filaments. CHEN C.-Y., MUNDY L.G., OSTRIKER E.C., et al.
2019A&A...621A..42A 224           X C       4 16 ~ Characterizing the properties of nearby molecular filaments observed with Herschel. ARZOUMANIAN D., ANDRE P., KONYVES V., et al.
2019A&A...623A..16S 90           X         2 12 ~ Probing accretion of ambient cloud material into the Taurus B211/B213 filament. SHIMAJIRI Y., ANDRE P., PALMEIRIM P., et al.
2019A&A...626A..76R 27     A               1 7 ~ How the power spectrum of dust continuum images may hide the presence of a characteristic filament width. ROY A., ANDRE P., ARZOUMANIAN D., et al.
2019A&A...628A..68G viz 134           X C       2 11 ~ SPHERE view of the jet and the envelope of RY Tauri. GARUFI A., PODIO L., BACCIOTTI F., et al.
2019A&A...628A.110M viz 45           X         1 30 ~ Dense cores and star formation in the giant molecular cloud Vela C. MASSI F., WEISS A., ELIA D., et al.
2019A&A...629A.135D 385     A     X C       8 15 ~ Star formation activity and the spatial distribution and mass segregation of dense cores in the early phases of star formation. DIB S. and HENNING T.
2019A&A...629L...4A 179           X C       3 12 ~ The role of molecular filaments in the origin of the prestellar core mass function and stellar initial mass function. ANDRE P., ARZOUMANIAN D., KONYVES V., et al.
2019A&A...630A.136N viz 45           X         1 8 ~ The chemical structure of the very young starless core L1521E. NAGY Z., SPEZZANO S., CASELLI P., et al.
2019A&A...630A.137G viz 2195     A D     X C       49 560 ~ Structure and kinematics of the Taurus star-forming region from Gaia-DR2 and VLBI astrometry. GALLI P.A.B., LOINARD L., BOUY H., et al.
2019AJ....158...54E viz 90             C       1 101 ~ A survey for new members of Taurus from stellar to planetary masses. ESPLIN T.L. and LUHMAN K.L.
2019ApJ...871..134S 2625 T   A S   X C       56 34 ~ An ammonia spectral map of the
L1495-B218 filaments in the Taurus molecular cloud. II. CCS and HC7N chemistry and three modes of star formation in the filaments.
SEO Y.M., MAJUMDAR L., GOLDSMITH P.F., et al.
2019ApJ...874..147K 269           X         6 24 ~ The Green Bank Ammonia Survey: a virial analysis of Gould Belt clouds in Data Release 1. KERR R., KIRK H., DI FRANCESCO J., et al.
2019ApJ...877...93C 45           X         1 187 ~ Droplets. I. Pressure-dominated coherent structures in L1688 and B18. CHEN H.H.-H., PINEDA J.E., GOODMAN A.A., et al.
2019ApJ...879...88D 90           X         2 13 ~ Discovery of CCS velocity-coherent substructures in the Taurus Molecular Cloud 1. DOBASHI K., SHIMOIKURA T., OCHIAI T., et al.
2019ApJ...879..125Z 90           X         2 100 ~ A large catalog of accurate distances to local molecular clouds: the Gaia DR2 edition. ZUCKER C., SPEAGLE J.S., SCHLAFLY E.F., et al.
2019ApJ...883...95S 90           X         2 23 ~ Magnetic fields in the infrared dark cloud G34.43+0.24. SOAM A., LIU T., ANDERSSON B.-G., et al.
2019ApJ...884....4K 45           X         1 50 ~ KFPA Examinations of Young STellar Object Natal Environments (KEYSTONE): hierarchical ammonia structures in galactic giant molecular clouds. KEOWN J., DI FRANCESCO J., ROSOLOWSKY E., et al.
2019ApJ...887..243T 179           X         4 7 ~ Chemical properties of two dense cores in a Planck Galactic Cold Clump G168.72-15.48. TANG M., GE J.X., QIN S.-L., et al.
2019MNRAS.485.4509L 564     A     X         13 15 ~ Magnetized interstellar molecular clouds - II. The large-scale structure and dynamics of filamentary molecular clouds. LI P.S. and KLEIN R.I.
2019MNRAS.486..462P 179           X   F     3 31 ~ QUIJOTE scientific results - III. Microwave spectrum of intensity and polarization in the Taurus Molecular Cloud complex and L1527. POIDEVIN F., RUBINO-MARTIN J.A., DICKINSON C., et al.
2019MNRAS.489..962H 2760 T   A S   X C       59 5 ~
L1495 revisited: a PPMAP view of a star-forming filament.
HOWARD A.D.P., WHITWORTH A.P., MARSH K.A., et al.
2019PASJ...71...73T 385 T   A     X C       7 22 ~ A centrally concentrated sub-solar-mass starless core in the
Taurus
L1495
filamentary complex.
TOKUDA K., TACHIHARA K., SAIGO K., et al.
2018A&A...610A..77H viz 566           X C       12 45 10 An ALMA study of the Orion Integral Filament. I. Evidence for narrow fibers in a massive cloud. HACAR A., TAFALLA M., FORBRICH J., et al.
2018A&A...612A..71J 44           X         1 45 8 Herschel and SCUBA-2 observations of dust emission in a sample of Planck cold clumps. JUVELA M., HE J., PATTLE K., et al.
2018A&A...612A..79B viz 44           X         1 125 ~ Early phases in the stellar and substellar formation and evolution. Infrared and submillimeter data in the Barnard 30 dark cloud. BARRADO D., DE GREGORIO MONSALVO I., HUELAMO N., et al.
2018A&A...615A.125B viz 305           X C       6 36 1 The dense cores and filamentary structure of the molecular cloud in Corona Australis: Herschel SPIRE and PACS observations from the Herschel Gould Belt Survey. BRESNAHAN D., WARD-THOMPSON D., KIRK J.M., et al.
2018A&A...617A..27P viz 897 T K A     X C       19 27 ~ Kinematics of dense gas in the
L1495 filament.
PUNANOVA A., CASELLI P., PINEDA J.E., et al.
2018A&A...620A..27J viz 261           X C       5 168 ~ Multiplicity and clustering in Taurus star forming region. II. From ultra-wide pairs to dense NESTs. JONCOUR I., DUCHENE G., MORAUX E., et al.
2018A&A...620A..62G viz 44           X         1 19 ~ The Serpens filament at the onset of slightly supercritical collapse. GONG Y., LI G.X., MAO R.Q., et al.
2018AJ....156..271L viz 366       D S   X C       7 629 ~ The stellar membership of the Taurus star-forming region. LUHMAN K.L.
2018ApJ...853..169D 44           X         1 17 2 Morphology and kinematics of filaments in the Serpens and Perseus molecular clouds. DHABAL A., MUNDY L.G., RIZZO M.J., et al.
2018ApJ...856..141T 1288 T   A     X C       28 7 3 The properties of Planck Galactic Cold Clumps in the
L1495 dark cloud.
TANG M., LIU T., QIN S.-L., et al.
2018ApJ...859...33G viz 1088     A D S   X C       24 126 6 The Gould's Belt Distances Survey (GOBELINS). IV. Distance, depth, and kinematics of the Taurus star-forming region. GALLI P.A.B., LOINARD L., ORTIZ-LEON G.N., et al.
2018ApJ...859..151L 87           X         2 18 4 A holistic perspective on the dynamics of G035.39-00.33: the interplay between gas and magnetic fields. LIU T., LI P.S., JUVELA M., et al.
2018ApJ...862....8T 44           X         1 9 ~ Warm CO gas generated by possible turbulent shocks in a low-mass star-forming dense core in Taurus. TOKUDA K., ONISHI T., SAIGO K., et al.
2018ApJ...863..126C 409       D     X C       9 25 ~ A study of the c-C3HD/c-C3H2 ratio in low-mass star-forming regions. CHANTZOS J., SPEZZANO S., CASELLI P., et al.
2018ApJ...864..153Z 44           X         1 15 6 Physical properties of large-scale galactic filaments. ZUCKER C., BATTERSBY C. and GOODMAN A.
2018ApJ...865...51T 44           X         1 8 ~ Possible counterrotation between the disk and protostellar envelope around the class I protostar IRAS 04169+2702. TAKAKUWA S., TSUKAMOTO Y., SAIGO K., et al.
2018ApJ...867..151D viz 104       D     X         3 389 ~ Distances and kinematics of Gould Belt star-forming regions with Gaia DR2 results. DZIB S.A., LOINARD L., ORTIZ-LEON G.N., et al.
2018ApJS..236...49Z viz 44           X         1 79 2 The TOP-SCOPE survey of PGCCs: PMO and SCUBA-2 observations of 64 PGCCs in the second Galactic quadrant. ZHANG C.-P., LIU T., YUAN J., et al.
2018ApJS..238....8K 17       D               1 17 ~ The JCMT Gould Belt Survey: SCUBA-2 data reduction methods and Gaussian source recovery analysis. KIRK H., HATCHELL J., JOHNSTONE D., et al.
2018MNRAS.473..447L 44           X         1 23 1 Rontgen spheres around active stars. LOCCI D., CECCHI-PESTELLINI C., MICELA G., et al.
2018MNRAS.474.4881H 44           X         1 5 2 Accretion-driven turbulence in filaments - I. Non-gravitational accretion. HEIGL S., BURKERT A. and GRITSCHNEDER M.
2018MNRAS.475..121S 44           X         1 20 9 Magnetic tension and instabilities in the Orion A integral-shaped filament. SCHLEICHER D.R.G. and STUTZ A.
2018MNRAS.477..325B 44           X         1 7 ~ The extremely truncated circumstellar disc of V410 X-ray 1: a precursor to TRAPPIST-1? BONEBERG D.M., FACCHINI S., CLARKE C.J., et al.
2018MNRAS.478.2119L 174           X C       3 36 1 The straight and isolated G350.54+0.69 filament: density profile and star formation content. LIU H.-L., STUTZ A. and YUAN J.-H.
2018MNRAS.479.1722C 87           X         2 5 1 Synthetic C18O observations of fibrous filaments: the problems of mapping from PPV to PPP. CLARKE S.D., WHITWORTH A.P., SPOWAGE R.L., et al.
2018MNRAS.481.4662R 44           X         1 21 ~ Chemical tracers in proto-brown dwarfs: CN, HCN, and HNC observations. RIAZ B., THI W.-F. and CASELLI P.
2018MNRAS.481.5532P 44           X         1 14 ~ Constraining the nature of DG Tau A's thermal and non-thermal radio emission. PURSER S.J.D., AINSWORTH R.E., RAY T.P., et al.
2018PASJ...70...96A 174           X C       3 6 ~ Molecular filament formation and filament-cloud interaction: Hints from Nobeyama 45 m telescope observations . ARZOUMANIAN D., SHIMAJIRI Y., INUTSUKA S., et al.
2017A&A...601A..18B 111     A     X         3 9 ~ Ionisation in turbulent magnetic molecular clouds. I. Effect on density and mass-to-flux ratio structures. BAILEY N.D., BASU S. and CASELLI P.
2017A&A...604A..58H 383           X C       8 8 7 Parameterizing the interstellar dust temperature. HOCUK S., SZUCS L., CASELLI P., et al.
2017A&A...604A..74S 43           X         1 25 18 Testing the universality of the star-formation efficiency in dense molecular gas. SHIMAJIRI Y., ANDRE P., BRAINE J., et al.
2017A&A...606A.123H viz 724           X C       16 29 20 Fibers in the NGC 1333 proto-cluster. HACAR A., TAFALLA M. and ALVES J.
2017AJ....154..198Z 17       D               1 59 35 Target selection for the SDSS-IV APOGEE-2 Survey. ZASOWSKI G., COHEN R.E., CHOJNOWSKI S.D., et al.
2017ApJ...834..202G 47           X         1 3 14 Oscillating filaments. I. Oscillation and geometrical fragmentation. GRITSCHNEDER M., HEIGL S. and BURKERT A.
2017ApJ...836..199H viz 44           X         1 5 8 Tracing the magnetic field of IRDC G028.23-00.19 using NIR polarimetry. HOQ S., CLEMENS D.P., GUZMAN A.E., et al.
2017ApJ...843....7P 85           X         2 6 3 The dense-gas mass versus star formation rate relation: a misleading linearity? PARMENTIER G.
2017ApJ...843...63F 43           X         1 22 20 The Green Bank Ammonia Survey: first results of NH3 mapping of the Gould Belt. FRIESEN R.K., PINEDA J.E., ROSOLOWSKY E., et al.
2017ApJ...844..158S 1132     A     X C       26 53 11 Dynamical masses of low-mass stars in the Taurus and Ophiuchus star-forming regions. SIMON M., GUILLOTEAU S., DI FOLCO E., et al.
2017ApJ...846..144K viz 85           X         2 18 9 The Green Bank Ammonia Survey: dense cores under pressure in Orion A. KIRK H., FRIESEN R.K., PINEDA J.E., et al.
2017ApJ...847..114L 43           X         1 12 6 Analytical core mass function (CMF) from filaments: under which circumstances can filament fragmentation reproduce the CMF? LEE Y.-N., HENNEBELLE P. and CHABRIER G.
2017MNRAS.465.3343D 87             C       1 5 12 The hot Jupiter of the magnetically active weak-line T Tauri star V830 Tau. DONATI J.-F., YU L., MOUTOU C., et al.
2017MNRAS.467..812M 85           X         2 55 4 The JCMT Gould Belt Survey: a first look at SCUBA-2 observations of the Lupus I molecular cloud. MOWAT C., HATCHELL J., RUMBLE D., et al.
2017MNRAS.467.1342Y 44           X         1 12 22 A hot Jupiter around the very active weak-line T Tauri star TAP 26. YU L., DONATI J.-F., HEBRARD E.M., et al.
2017MNRAS.468.2489C 46           X         1 5 19 Filamentary fragmentation in a turbulent medium. CLARKE S.D., WHITWORTH A.P., DUARTE-CABRAL A., et al.
2016A&A...586A..27K 45           X         1 9 32 Gravitational fragmentation caught in the act: the filamentary Musca molecular cloud. KAINULAINEN J., HACAR A., ALVES J., et al.
2016A&A...587A..47T viz 42           X         1 48 17 Two-level hierarchical fragmentation in the northern filament of the Orion Molecular Cloud 1. TEIXEIRA P.S., TAKAHASHI S., ZAPATA L.A., et al.
2016A&A...587A..97H 336         O X C       7 11 31 The Musca cloud: A 6 pc-long velocity-coherent, sonic filament. HACAR A., KAINULAINEN J., TAFALLA M., et al.
2016A&A...589A..80H viz 42           X         1 15 13 APOGEE strings: A fossil record of the gas kinematic structure. HACAR A., ALVES J., FORBRICH J., et al.
2016A&A...590A..75F 84           X         2 36 8 Structure and stability in TMC-1: Analysis of NH3 molecular line and Herschel continuum data. FEHER O., TOTH L.V., WARD-THOMPSON D., et al.
2016A&A...591A.104H 1021       D     X C       24 10 11 Opacity broadening and interpretation of suprathermal CO linewidths: Macroscopic turbulence and tangled molecular clouds. HACAR A., ALVES J., BURKERT A., et al.
2016A&A...592A..61L viz 42           X         1 23 10 Earliest phases of star formation (EPoS) Dust temperature distributions in isolated starless cores. LIPPOK N., LAUNHARDT R., HENNING T., et al.
2016ApJ...822...59S viz 42           X         1 4693 26 The Bolocam Galactic Plane Survey. XIV. Physical properties of massive starless and star-forming clumps. SVOBODA B.E., SHIRLEY Y.L., BATTERSBY C., et al.
2016ApJ...833...44L 42           X         1 20 12 The JCMT Gould belt survey: dense core clusters in Orion A. LANE J., KIRK H., JOHNSTONE D., et al.
2016ApJ...833..204F 42           X         1 16 14 The fragmentation and stability of hierarchical structure in Serpens South. FRIESEN R.K., BOURKE T.L., DI FRANCESCO J., et al.
2016MNRAS.455.2371H 42           X         1 7 1 Chemical tracers of pre-brown dwarf cores formed through turbulent fragmentation. HOLDSHIP J. and VITI S.
2016MNRAS.458..319C 46           X         1 3 12 Perturbation growth in accreting filaments. CLARKE S.D., WHITWORTH A.P. and HUBBER D.A.
2016MNRAS.459..342M viz 1212 T K A D     X C F     27 550 31 A census of dense cores in the Taurus
L1495 cloud from the Herschel Gould Belt Survey.
MARSH K.A., KIRK J.M., ANDRE P., et al.
2016MNRAS.461.1088S 42           X         1 16 7 The role of non-ionizing radiation pressure in star formation: the stability of cores and filaments. SEO Y.M. and YOUDIN A.N.
2016MNRAS.463.1008W viz 1112 T K A     X C F     24 230 15 The JCMT and Herschel Gould Belt Surveys: a comparison of SCUBA-2 and Herschel data of dense cores in the Taurus dark cloud
L1495.
WARD-THOMPSON D., PATTLE K., KIRK J.M., et al.
2015A&A...574A.104T viz 3278     A S   X C       78 16 46 Chains of dense cores in the Taurus
L1495/B213 complex.
TAFALLA M. and HACAR A.
2015ApJ...801...77M 83           X         2 14 15 Star formation in turbulent molecular clouds with colliding flow. MATSUMOTO T., DOBASHI K. and SHIMOIKURA T.
2015ApJ...805..185S 2041 T   A S   X C       47 72 16 An ammonia spectral map of the
L1495-B218 filaments in the Taurus molecular cloud. I. Physical properties of filaments and dense cores.
SEO Y.M., SHIRLEY Y.L., GOLDSMITH P., et al.
2015ApJ...807...67M 54           X         1 3 40 The formation of filamentary bundles in turbulent molecular clouds. MOECKEL N. and BURKERT A.
2015ApJ...807..119R 206           X         5 26 17 Internal and relative motions of the Taurus and Ophiuchus star-forming regions. RIVERA J.L., LOINARD L., DZIB S.A., et al.
2015MNRAS.446.2118T 41           X         1 12 9 Polytropic models of filamentary interstellar clouds - II. Helical magnetic fields. TOCI C. and GALLI D.
2015MNRAS.446.2550R 41           X         1 26 10 Very low-luminosity Class I/flat outflow sources in σ Orionis. RIAZ B., THOMPSON M., WHELAN E.T., et al.
2015MNRAS.449.2472B 889 T   A S   X C       19 60 19 The JCMT Gould Belt Survey: SCUBA-2 observations of circumstellar discs in
L 1495.
BUCKLE J.V., DRABEK-MAUNDER E., GREAVES J., et al.
2015MNRAS.449.3867G 230     A     X         6 28 4 Variation of the ultraviolet extinction law across the Taurus-Auriga star-forming complex. A GALEX based study. GOMEZ DE CASTRO A.I., LOPEZ-SANTIAGO J., LOPEZ-MARTINEZ F., et al.
2015MNRAS.450.4043W 43           X         1 25 53 Large-scale filaments associated with Milky Way spiral arms. WANG K., TESTI L., GINSBURG A., et al.
2015MNRAS.451.4384T 123           X   F     2 34 12 Magnetic field-gas density relation and observational implications revisited. TRITSIS A., PANOPOULOU G.V., MOUSCHOVIAS T.Ch., et al.
2014A&A...567A.117G 16       D               2 37 21 The masses of young stars: CN as a probe of dynamical masses. GUILLOTEAU S., SIMON M., PIETU V., et al.
2014ARA&A..52..339R 41           X         1 90 73 Microarcsecond radio astrometry. REID M.J. and HONMA M.
2014ApJ...786...97H viz 41           X         1 329 99 An optical spectroscopic study of T Tauri stars. I. Photospheric properties. HERCZEG G.J. and HILLENBRAND L.A.
2014ApJ...791...27S 45           X         1 12 52 The identification of filaments on far-infrared and submillimiter images: morphology, physical conditions and relation with star formation of filamentary structure. SCHISANO E., RYGL K.L.J., MOLINARI S., et al.
2014ApJ...795...70P 81           X         2 19 8 Characterization of molecular outflows in the substellar domain. PHAN-BAO N., LEE C.-F., HO P.T.P., et al.
2014MNRAS.438.2167D 16       D               3 82 ~ A survey for ground-state OH masers towards a sample of Herbig-Haro objects. DE WITT A., BIETENHOLZ M., BOOTH R., et al.
2014MNRAS.439.1996J 82           X         2 18 27 Gas kinematics and excitation in the filamentary IRDC G035.39-00.33. JIMENEZ-SERRA I., CASELLI P., FONTANI F., et al.
2014MNRAS.439.3683M 390     A     X C F     8 28 21 Properties of starless and prestellar cores in Taurus revealed by Herschel SPIRE/PACS imaging. MARSH K.A., GRIFFIN M.J., PALMEIRIM P., et al.
2014MNRAS.440.2860H 124           X         3 20 49 The dynamical properties of dense filaments in the infrared dark cloud G035.39-00.33. HENSHAW J.D., CASELLI P., FONTANI F., et al.
2014MNRAS.444.2507P 489           X         12 11 24 13CO filaments in the Taurus molecular cloud. PANOPOULOU G.V., TASSIS K., GOLDSMITH P.F., et al.
2014MNRAS.445.2900S 47           X         1 10 69 On the nature of star-forming filaments - I. Filament morphologies. SMITH R.J., GLOVER S.C.O. and KLESSEN R.S.
2013A&A...550A..38P 119     A       C       4 14 221 Herschel view of the Taurus B211/3 filament and striations: evidence of filamentary growth? PALMEIRIM P., ANDRE P., KIRK J., et al.
2013A&A...554A..55H viz 3159 T   A S   X C       76 33 159 Cores, filaments, and bundles: hierarchical core formation in the
L1495/B213 Taurus region.
HACAR A., TAFALLA M., KAUFFMANN J., et al.
2013A&A...559A.133Y 47           X         1 8 56 Variation in dust properties in a dense filament of the Taurus molecular complex (L1506). YSARD N., ABERGEL A., RISTORCELLI I., et al.
2013ApJ...763...45H 80           X         2 17 3 Chemical and physical conditions in molecular cloud core DC 000.4-19.5 (SL42) in Corona Australis. HARDEGREE-ULLMAN E., HARJU J., JUVELA M., et al.
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