Barnard 211 , the SIMBAD biblio

Barnard 211 , the SIMBAD biblio (127 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST07:09:59


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Title First 3 Authors
1927Barn..C......0B viz 355 ~ A photographic Atlas of selected regions of the Milky Way. BARNARD E.E.
1984A&A...137...17G 23 40 Ammonia observations and star counts in the Taurus dark cloud complex. GAIDA M., UNGERECHTS H. and WINNEWISSER G.
1987ApJS...63..645U 163 353 A CO survey of the dark nebulae in Perseus, Taurus and Auriga. UNGERECHTS H. and THADDEUS P.
1988A&A...199..312B 45 5 Low spatial resolution observations of C3H2 in HII regions and dark clouds. BROUILLET N., BAUDRY A. and DAIGNE G.
1991ApJS...75..611C 458 41 Young stellar objects detected by IRAS. CLARK F.O.
1997A&A...317..898J 21 6 Structure of L 1521B: CO observations of a dense core in Taurus. JUVELA M., LEHTINEN K., MATTILA K., et al.
2004A&A...418..131K viz 913 29 Far-infrared loops in the 2nd Galactic Quadrant. KISS C., MOOR A. and TOTH L.V.
2004BaltA..13..434K 23 0 Initial conditions of low, intermediate and high mass star formation. KUN M., APAI D., PASCUCCI I., et al.
2006CoKon.104..121K 46 0 Spectroscopic studies of star forming regions. KUN M.
2010ApJ...725.1327S 648     A D     X C       17 57 43 Star formation in the Taurus filament L 1495: from dense cores to stars. SCHMALZL M., KAINULAINEN J., QUANZ S.P., et al.
2012A&A...540A..10S 39           X         1 20 35 Herschel observations of a potential core-forming clump: Perseus B1-E. SADAVOY S.I., DI FRANCESCO J., ANDRE P., et al.
2012MNRAS.424.2778P 464           X C       11 30 16 A search for pre-substellar cores and proto-brown dwarf candidates in Taurus: multiwavelength analysis in the B213-L1495 clouds. PALAU A., DE GREGORIO-MONSALVO I., MORATA O., et al.
2012A&A...548L...6H 40           X         1 7 27 Resolving the Vela C ridge with P-ArTeMiS and Herschel. HILL T., ANDRE P., ARZOUMANIAN D., et al.
2013ApJ...764..140M 39           X         1 14 15 Origin of the dense core mass function in contracting filaments. MYERS P.C.
2013A&A...550A..38P 2783 T K A D S   X C       69 14 413 Herschel view of the
Taurus
B211
/3 filament and striations: evidence of filamentary growth?
PALMEIRIM P., ANDRE P., KIRK J., et al.
2013MNRAS.432.1424K 78           X         2 30 52 First results from the Herschel Gould Belt survey in Taurus. KIRK J.M., WARD-THOMPSON D., PALMEIRIM P., et al.
2013A&A...553A.119A 82           X         2 13 125 Formation and evolution of interstellar filaments. Hints from velocity dispersion measurements. ARZOUMANIAN D., ANDRE P., PERETTO N., et al.
2013A&A...554A..55H viz 956       D     X C       24 33 312 Cores, filaments, and bundles: hierarchical core formation in the L1495/B213 Taurus region. HACAR A., TAFALLA M., KAUFFMANN J., et al.
2013A&A...558A..27R 118           X         3 4 14 Nonisothermal filaments in equilibrium. RECCHI S., HACAR A. and PALESTINI A.
2013MNRAS.436.3247K 199           X C F     3 8 79 A supersonic turbulence origin of Larson's laws. KRITSUK A.G., LEE C.T. and NORMAN M.L.
2013A&A...559A.133Y 42           X         1 8 61 Variation in dust properties in a dense filament of the Taurus molecular complex (L1506). YSARD N., ABERGEL A., RISTORCELLI I., et al.
2013A&A...560A..68H 44           X         1 4 46 Ion-neutral friction and accretion-driven turbulence in self-gravitating filaments. HENNEBELLE P. and ANDRE P.
2014ApJ...784..116M 118           X         3 14 24 Lupus I observations from the 2010 flight of the balloon-borne large aperture submillimeter telescope for polarimetry. MATTHEWS T.G., ADE P.A.R., ANGILE F.E., et al.
2014ApJ...785...24T 42           X         1 9 56 Magnetohydrostatic equilibrium structure and mass of filamentary isothermal cloud threaded by lateral magnetic field. TOMISAKA K.
2014MNRAS.439.3683M 39           X         1 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.
2014A&A...568A..98A 119           X         3 14 41 Herschel view of the large-scale structure in the Chamaeleon dark clouds. ALVES DE OLIVEIRA C., SCHNEIDER N., MERIN B., et al.
2014ApJ...793...94F 39           X         1 9 7 A dynamically collapsing core and a precursor of a core in a filament supported by turbulent and magnetic pressures. FURUYA R.S., KITAMURA Y. and SHINNAGA H.
2014MNRAS.443..230H 80           X         2 8 17 Accretion and diffusion time-scales in sheets and filaments. HEITSCH F. and HARTMANN L.
2014MNRAS.444.2507P 40           X         1 11 32 13CO filaments in the Taurus molecular cloud. PANOPOULOU G.V., TASSIS K., GOLDSMITH P.F., et al.
2014MNRAS.445.2900S 125           X         3 10 142 On the nature of star-forming filaments - I. Filament morphologies. SMITH R.J., GLOVER S.C.O. and KLESSEN R.S.
2015A&A...574A.104T viz 376       D     X C       9 16 116 Chains of dense cores in the Taurus L1495/B213 complex. TAFALLA M. and HACAR A.
2015MNRAS.446.2110T 79           X         2 10 16 Polytropic models of filamentary interstellar clouds - I. Structure and stability. TOCI C. and GALLI D.
2015MNRAS.446.2118T 40           X         1 12 9 Polytropic models of filamentary interstellar clouds - II. Helical magnetic fields. TOCI C. and GALLI D.
2015ApJ...801...77M 41           X         1 14 51 Star formation in turbulent molecular clouds with colliding flow. MATSUMOTO T., DOBASHI K. and SHIMOIKURA T.
2015ApJ...805..185S 675           X C       16 71 27 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...806..226M 40           X         1 22 16 Characteristic structure of star-forming clouds. MYERS P.C.
2015MNRAS.452..715P viz 199           X         5 11 14 Optical polarization map of the Polaris Flare with RoboPol. PANOPOULOU G., TASSIS K., BLINOV D., et al.
2015MNRAS.453.2036B 119           X         3 18 24 Filaments in the Lupus molecular clouds. BENEDETTINI M., SCHISANO E., PEZZUTO S., et al.
2015A&A...584A..91K viz 40           X         1 770 344 A census of dense cores in the Aquila cloud complex: SPIRE/PACS observations from the Herschel Gould Belt survey. KOENYVES V., ANDRE Ph., MEN'SHCHIKOV A., et al.
2015A&A...584A.111R 81             C       1 6 27 Possible link between the power spectrum of interstellar filaments and the origin of the prestellar core mass function. ROY A., ANDRE P., ARZOUMANIAN D., et al.
2015MNRAS.453L..41S 41           X         1 15 41 Detection of two power-law tails in the probability distribution functions of massive GMCs. SCHNEIDER N., BONTEMPS S., GIRICHIDIS P., et al.
2016A&A...586A.136P 1739     A D S   X C       42 6 82 Planck intermediate results. XXXIII. Signature of the magnetic field geometry of interstellar filaments in dust polarization maps. PLANCK COLLABORATION, ADE P.A.R., AGHANIM N., et al.
2016A&A...586A.138P 94           X         2 20 290 Planck intermediate results. XXXV. Probing the role of the magnetic field in the formation of structure in molecular clouds. PLANCK COLLABORATION, ADE P.A.R., AGHANIM N., et al.
2016A&A...590A...2S 127           X         3 14 105 Slingshot mechanism in Orion: Kinematic evidence for ejection of protostars by filaments. STUTZ A.M. and GOULD A.
2016A&A...590A.110C 555     A     X C       13 11 100 Filamentary structure and magnetic field orientation in Musca. COX N.L.J., ARZOUMANIAN D., ANDRE P., et al.
2016A&A...591A.104H 85           X         2 10 56 Opacity broadening and interpretation of suprathermal CO linewidths: Macroscopic turbulence and tangled molecular clouds. HACAR A., ALVES J., BURKERT A., et al.
2016MNRAS.459..342M viz 40           X         1 550 98 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.459.1803W 81           X         2 12 14 Magnetohydrodynamical simulation of the formation of clumps and filaments in quiescent diffuse medium by thermal instability. WAREING C.J., PITTARD J.M., FALLE S.A.E.G., et al.
2016A&A...592A..54A viz 124           X         3 17 80 Characterizing filaments in regions of high-mass star formation: High-resolution submilimeter imaging of the massive star-forming complex NGC 6334 with ArTeMiS. ANDRE P., REVERET V., KONYVES V., et al.
2016ApJ...833..204F 41           X         1 16 23 The fragmentation and stability of hierarchical structure in Serpens South. FRIESEN R.K., BOURKE T.L., DI FRANCESCO J., et al.
2017MNRAS.465.2254K 42           X         1 12 18 Filamentary flow and magnetic geometry in evolving cluster-forming molecular cloud clumps. KLASSEN M., PUDRITZ R.E. and KIRK H.
2017ApJ...836..199H viz 42           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...838...49X viz 41           X         1 217 7 CO(J=1-0) observations of a filamentary molecular cloud in the Galactic region centered at l=150°, b=3.5°. XIONG F., CHEN X., YANG J., et al.
2017A&A...601A..18B 41           X         1 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.
2017ApJ...845...34D 41           X         1 12 7 The molecular cloud S242: physical environment and star-formation activities. DEWANGAN L.K., BAUG T., OJHA D.K., et al.
2017ApJ...847..140C 82             C       1 5 9 Fantastic striations and where to find them: the origin of magnetically aligned striations in interstellar clouds. CHEN C.-Y., LI Z.-Y., KING P.K., et al.
2017ApJ...848...51D 41           X         1 16 1 Embedded filaments in IRAS 05463+2652: early stage of fragmentation and star formation activities. DEWANGAN L.K., DEVARAJ R., BAUG T., et al.
2017ApJ...850....3K 41           X         1 38 11 The Green Bank Ammonia Survey: observations of hierarchical dense gas structures in Cepheus-L1251. KEOWN J., DI FRANCESCO J., KIRK H., et al.
2017ApJ...850..195E viz 41           X         1 23 3 Understanding the links among the magnetic fields, filament, bipolar bubble, and star formation in RCW 57A using NIR polarimetry. ESWARAIAH C., LAI S.-P., CHEN W.-P., et al.
2017A&A...608A..21S viz 162           X         4 13 2 Correlation of gas dynamics and dust in the evolved filament G82.65-02.00. SAAJASTO M., JUVELA M., DOBASHI K., et al.
2017MNRAS.472..647Z 45           X         1 3 14 Are fibres in molecular cloud filaments real objects? ZAMORA-AVILES M., BALLESTEROS-PAREDES J. and HARTMANN L.W.
2018A&A...609A.123M viz 41           X         1 23 2 The Seahorse Nebula: New views of the filamentary infrared dark cloud G304.74+01.32 from SABOCA, Herschel, and WISE. MIETTINEN O.
2018ApJS..234...28L 42           X         1 26 49 The TOP-SCOPE survey of Planck Galactic cold clumps: survey overview and results of an exemplar source, PGCC G26.53+0.17. LIU T., KIM K.-T., JUVELA M., et al.
2018MNRAS.475..121S 41           X         1 20 15 Magnetic tension and instabilities in the Orion A integral-shaped filament. SCHLEICHER D.R.G. and STUTZ A.
2018ApJ...859...33G viz 41           X         1 126 78 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.
2018MNRAS.478.2119L 1342     A     X         33 36 5 The straight and isolated G350.54+0.69 filament: density profile and star formation content. LIU H.-L., STUTZ A. and YUAN J.-H.
2018ApJ...864..153Z 45           X         1 15 62 Physical properties of large-scale galactic filaments. ZUCKER C., BATTERSBY C. and GOODMAN A.
2018A&A...617A..27P viz 82           X         2 27 7 Kinematics of dense gas in the L1495 filament. PUNANOVA A., CASELLI P., PINEDA J.E., et al.
2018ApJ...868...51M 82           X         2 22 8 Magnetic field structure in spheroidal star-forming clouds. MYERS P.C., BASU S. and AUDDY S.
2018A&A...620A..27J viz 82             C       2 168 11 Multiplicity and clustering in Taurus star forming region. II. From ultra-wide pairs to dense NESTs. JONCOUR I., DUCHENE G., MORAUX E., et al.
2019A&A...621A..42A 92           X         2 16 128 Characterizing the properties of nearby molecular filaments observed with Herschel. ARZOUMANIAN D., ANDRE P., KONYVES V., et al.
2019ApJ...871..134S 502           X         12 33 5 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.
2018PASJ...70...96A 294           X C       6 6 41 Molecular filament formation and filament-cloud interaction: Hints from Nobeyama 45 m telescope observations . ARZOUMANIAN D., SHIMAJIRI Y., INUTSUKA S., et al.
2019A&A...623A..16S 3874 T   A S   X C       90 12 52 Probing accretion of ambient cloud material into the
Taurus
B211
/B213 filament.
SHIMAJIRI Y., ANDRE P., PALMEIRIM P., et al.
2019A&A...623A.141F viz 42           X         1 15 ~ Multiwavelength study of the G345.5+1.5 region. FIGUEIRA M., LOPEZ-CALDERON C., BRONFMAN L., et al.
2019MNRAS.485.2825A viz 42           X         1 149 7 Statistical analysis of the interplay between interstellar magnetic fields and filaments hosting Planck Galactic cold clumps. ALINA D., RISTORCELLI I., MONTIER L., et al.
2019MNRAS.485.4509L 127           X         3 15 37 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 42           X         1 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.
2019A&A...626A..76R 712           X C       16 7 8 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.
2019ApJ...880...88X 42           X         1 5 ~ CO (J = 1-0) observations toward filamentary molecular clouds in the Galactic region with l = [169.{Deg}75, 174.{Deg}75], b = [-0.{Deg}75, 0.{Deg}5]. XIONG F., CHEN X., ZHANG Q., et al.
2019A&A...628A...6S 44           X         1 12 31 The physical and chemical structure of Sagittarius B2. IV. Converging filaments in the high-mass cluster forming region Sgr B2(N). SCHWORER A., SANCHEZ-MONGE A., SCHILKE P., et al.
2019ApJ...883....9S 42           X         1 10 ~ First sub-parsec-scale mapping of magnetic fields in the vicinity of a very-low-luminosity object, L1521F-IRS. SOAM A., LEE C.W., ANDERSSON B.-G., et al.
2019MNRAS.489..962H 418           X C       9 5 ~ L1495 revisited: a PPMAP view of a star-forming filament. HOWARD A.D.P., WHITWORTH A.P., MARSH K.A., et al.
2019A&A...629L...4A 45           X         1 12 41 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.137G viz 42           X         1 560 78 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.
2019A&A...632A..83S viz 527     A     X C       12 66 25 Probing fragmentation and velocity sub-structure in the massive NGC 6334 filament with ALMA. SHIMAJIRI Y., ANDRE P., NTORMOUSI E., et al.
2020MNRAS.492.5420S 46           X         1 13 40 The Hi-GAL catalogue of dusty filamentary structures in the Galactic plane. SCHISANO E., MOLINARI S., ELIA D., et al.
2020ApJ...891...73S 658       D     X C       15 18 38 Prevalence of complex organic molecules in starless and prestellar cores within the Taurus molecular cloud. SCIBELLI S. and SHIRLEY Y.
2020ApJ...891...84C 45           X         1 14 30 Velocity-coherent filaments in NGC 1333: evidence for accretion flow? CHEN M.C.-Y., DI FRANCESCO J., ROSOLOWSKY E., et al.
2020MNRAS.494.1971C 272       D     X   F     6 17 ~ Relative alignment between dense molecular cores and ambient magnetic field: the synergy of numerical models and observations. CHEN C.-Y., BEHRENS E.A., WASHINGTON J.E., et al.
2020A&A...637A..92G 44           X         1 31 41 Angular momentum profiles of Class 0 protostellar envelopes. GAUDEL M., MAURY A.J., BELLOCHE A., et al.
2020ApJ...896..163M 43           X         1 17 ~ Magnetic field structure in spheroidal star-forming clouds. II. Estimating field structure from observed maps. MYERS P.C., STEPHENS I.W., AUDDY S., et al.
2020A&A...642A..76Z viz 170           X         4 68 19 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.
2020ApJ...905..158W 86           X         2 18 24 Formation of the Hub-filament system G33.92+0.11: local interplay between gravity, velocity, and magnetic field. WANG J.-W., KOCH P.M., GALVAN-MADRID R., et al.
2021MNRAS.500.2831W 87           X         2 15 ~ Striations, integrals, hourglasses, and collapse - thermal instability driven magnetic simulations of molecular clouds. WAREING C.J., PITTARD J.M. and FALLE S.A.E.G.
2020A&A...644A..27B viz 470           X         11 16 32 Formation of the Musca filament: evidence for asymmetries in the accretion flow due to a cloud-cloud collision. BONNE L., BONTEMPS S., SCHNEIDER N., et al.
2021ApJ...907...33Y 17       D               2 78 21 The JCMT BISTRO survey: alignment between outflows and magnetic fields in dense Cores/Clumps. YEN H.-W., KOCH P.M., HULL C.L.H., et al.
2021ApJ...908...10N 44           X         1 33 19 Observations of magnetic fields surrounding LkHα 101 taken by the BISTRO survey with JCMT-POL-2. NGOC N.B., DIEP P.N., PARSONS H., et al.
2021ApJ...908...86A 45           X         1 17 17 Filament rotation in the California L1482 Cloud. ALVAREZ-GUTIERREZ R.H., STUTZ A.M., LAW C.Y., et al.
2021MNRAS.502..564A 44           X         1 9 ~ On filament fragmentation and the impact of ambient environment on it. ANATHPINDIKA S.V. and DI FRANCESCO J.
2021MNRAS.502.6188M 44           X         1 4 ~ Gravitational instability of non-isothermal filamentary molecular clouds in presence of external pressure. MOTIEI M.M., HOSSEINIRAD M. and ABBASSI S.
2021MNRAS.503.5425B 88           X         2 10 15 Magnetic field orientation in self-gravitating turbulent molecular clouds. BARRETO-MOTA L., DE GOUVEIA DAL PINO E.M., BURKHART B., et al.
2021ApJ...913...85H 45           X         1 18 20 The JCMT BISTRO survey: the distribution of magnetic field strengths toward the OMC-1 region. HWANG J., KIM J., PATTLE K., et al.
2021A&A...651A..36S viz 44           X         1 23 11 Probing the structure of a massive filament: ArTeMiS 350 and 450 µm mapping of the integral-shaped filament in Orion A. SCHULLER F., ANDRE P., SHIMAJIRI Y., et al.
2021ApJ...919....3C 44           X         1 70 12 TRAO survey of the nearby filamentary molecular clouds, the universal nursery of stars (TRAO FUNS). II. Filaments and dense cores in IC 5146. CHUNG E.J., LEE C.W., KIM S., et al.
2021ApJ...921...23G viz 131           X         3 27 7 A wide-field CO survey toward the California molecular filament. GUO W., CHEN X., FENG J., et al.
2021ApJ...923..150L 45           X         1 7 12 Extragalactic magnetism with SOFIA (legacy program) - II: a magnetically driven flow in the starburst ring of NGC 1097. LOPEZ-RODRIGUEZ E., BECK R., CLARK S.E., et al.
2022A&A...657L..13P 46           X         1 16 20 The width of Herschel filaments varies with distance. PANOPOULOU G.V., CLARK S.E., HACAR A., et al.
2022MNRAS.510.6085L viz 3854 T   A D S   X C F     83 12 20 Mapping the magnetic field in the Taurus/
B211 filamentary cloud with SOFIA HAWC + and comparing with simulation.
LI P.S., LOPEZ-RODRIGUEZ E., AJEDDIG H., et al.
2022ApJ...927..213P 421       D     X C       9 29 10 Methanol Mapping in Cold Cores: Testing Model Predictions. PUNANOVA A., VASYUNIN A., CASELLI P., et al.
2022ApJ...931..115W 45           X         1 19 4 Formation of the SDC13 Hub-filament System: A Cloud-Cloud Collision Imprinted on the Multiscale Magnetic Field. WANG J.-W., KOCH P.M., TANG Y.-W., et al.
2022MNRAS.514.3024L viz 45           X         1 16 2 The role of magnetic fields in the stability and fragmentation of filamentary molecular clouds: two case studies at OMC-3 and OMC-4. LI P.S., LOPEZ-RODRIGUEZ E., SOAM A., et al.
2022A&A...662A..52E 45           X         1 61 6 Gas phase Elemental abundances in Molecular cloudS (GEMS). VI. A sulphur journey across star-forming regions: study of thioformaldehyde emission. ESPLUGUES G., FUENTE A., NAVARRO-ALMAIDA D., et al.
2022ApJ...935..171B 45           X         1 15 8 The SOFIA FEEDBACK Legacy Survey Dynamics and Mass Ejection in the Bipolar H II Region RCW 36. BONNE L., SCHNEIDER N., GARCIA P., et al.
2022ApJ...938...44G 45           X         1 26 3 CO(J = 1 - 0) Observations toward the Filamentary Cloud in the Galactic Region of 153.°60 ≤ l ≤ 156.°50 and 1.°85 ≤ b ≤ 3.°50. GUO W., CHEN X., FENG J., et al.
2022A&A...667L...1A 476     A     X C       10 7 9 The typical width of Herschel filaments. ANDRE P.J., PALMEIRIM P. and ARZOUMANIAN D.
2023AJ....165...16C 47           X         1 31 ~ The Cassiopeia Filament: A Blown Spur of the Local Arm. CHEN X., SUN L., FENG J., et al.
2023A&A...670A..38G 93           X         2 5 2 Non-ideal magnetohydrodynamics of self-gravitating filaments. GUTIERREZ-VERA N., GRASSI T., BOVINO S., et al.
2023A&A...670A..59G 47           X         1 22 2 Gas kinematics around filamentary structures in the Orion B cloud. GAUDEL M., ORKISZ J.H., GERIN M., et al.
2023ApJ...946...62W 47           X         1 16 2 First BISTRO Observations of the Dark Cloud Taurus L1495A-B10: The Role of the Magnetic Field in the Earliest Stages of Low-mass Star Formation. WARD-THOMPSON D., KAROLY J., PATTLE K., et al.
2023A&A...672A.133S viz 252       D     X C       5 26 3 Witnessing the fragmentation of a filament into prestellar cores in Orion B/NGC 2024. SHIMAJIRI Y., ANDRE P., PERETTO N., et al.
2023ApJ...951...31L 47           X         1 17 ~ On the Origin of Radio-loudness in Active Galactic Nuclei Using Far-infrared Polarimetric Observations. LOPEZ-RODRIGUEZ E., KISHIMOTO M., ANTONUCCI R., et al.
2023A&A...675A.206S 233           X         5 8 ~ A panoptic view of the Taurus molecular cloud I. The cloud dynamics revealed by gas emission and 3D dust. SOLER J.D., ZUCKER C., PEEK J.E.G., et al.
2023MNRAS.525..364P 93           X         2 29 ~ Alignment of dense molecular core morphology and velocity gradients with ambient magnetic fields. PANDHI A., FRIESEN R.K., FISSEL L., et al.
2024A&A...681A..74J 50           X         1 12 ~ Modelling the dust emission of a filament in the Taurus molecular cloud. JUVELA M.
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