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TMC-1D , the SIMBAD biblio (32 results) | C.D.S. - SIMBAD4 rel 1.8 - 2024.03.28CET19:45:57 |
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 |
---|---|---|---|---|---|---|---|---|---|
1992ApJ...394..539H | 4 | 9 | 160 | Mapping observations of sulfur-containing carbon-chain molecules in Taurus molecular cloud (TMC-1). | HIRAHARA Y., SUZUKI H., YAMOMOTO S., et al. | ||||
1995ApJ...453..293L | 3 | 8 | 109 | Study of structure and small-scale fragmentation in TMC-1. | LANGER W.D., VELUSAMY T., KUIPER T.B.H., et al. | ||||
1997ApJ...477..241W | 2 | 5 | 41 | Physical conditions in quiescent dark cloud cores determined from multitransition observations of CCS. | WOLKOVITCH D., LANGER W.D., GOLDSMITH P.F., et al. | ||||
1998ApJ...497..842P | 9 | 2 | 56 | Low-mass clumps in TMC-1: scaling laws in the small-scale regime. | PENG R., LANGER W.D., VELUSAMY T., et al. | ||||
1998ApJ...501..723T | 25 | 26 | H13CO+ and CH3OH line observations of prestellar dense cores in the TMC-1C region. | TAKAKUWA S., MIKAMI H. and SAITO M. | |||||
1999A&A...350..204N | 5 | 2 | 33 | Time dependent chemical models of spherical dark clouds. | NEJAD L.A.M. and WAGENBLAST R. | ||||
2000A&A...353.1065H | 18 | 19 | The distribution of OH in Taurus Molecular Cloud-1. | HARJU J., WINNBERG A. and WOUTERLOOT J.G.A. | |||||
2000ApJS..128..271L | 21 | 24 | 33.8 GHz CCS survey of molecular cores in dark clouds. | LAI S.-P. and CRUTCHER R.M. | |||||
2001A&A...369..605H | 75 | T | 3 | 19 | Chemical constraints and microstructure in TMC-1 Core D. | HARTQUIST T.W., WILLIAMS D.A. and VITI S. | |||
2001ApJ...547..814H | 49 | 30 | Observations of DNC and HN13C in dark cloud cores. | HIROTA T., IKEDA M. and YAMAMOTO S. | |||||
2001ApJ...558..693D | 11 | 32 | Small-scale abundance variations in TMC-1: dynamics and hydrocarbon chemistry. | DICKENS J.E., LANGER W.D. and VELUSAMY T. | |||||
2002A&A...388.1004G | 23 | 33 | The molecular condensations ahead of Herbig-Haro objects. I. Multi-transition observations of HH 2. | GIRART J.M., VITI S., WILLIAMS D.A., et al. | |||||
2002A&A...391..681R | 1 | 4 | 15 | Dark cloud chemistry in initially H-rich regions. | RAWLINGS J.M.C., HARTQUIST T.W., WILLIAMS D.A., et al. | ||||
2002ApJ...577..206E | 4 | 24 | 297 | Star formation from galaxies to globules. | ELMEGREEN B.G. | ||||
2003AJ....126..311L | 1 | 6 | 31 | The physical and chemical status of pre-protostellar core B68. | LAI S.-P., VELUSAMY T., LANGER W.D., et al. | ||||
2003ApJ...584..818T | 23 | 22 | H13CO+ and CH3OH line observations of prestellar dense cores in the TMC-1C region. II. Internal structure. | TAKAKUWA S., KAMAZAKI T., SAITO M., et al. | |||||
2004A&A...420..533T | 64 | 12 | Very cold cores in the Taurus Molecular Ring as seen by ISO. | TOTH L.V., HAAS M., LEMKE D., et al. | |||||
2006A&A...448..425L | 2 | O | 3 | 12 | Determining the cosmic ray ionization rate in dynamically evolving clouds. | LINTOTT C.J. and RAWLINGS J.M.C. | |||
2006A&A...449..631P | 1 | 6 | 17 | Modeling the ortho-to-para abundance ratio of cyclic C3H2 in cold dense cores. | PARK I.H., WAKELAM V. and HERBST E. | ||||
2006ApJ...638..827G | 1 | 3 | 11 | Molecular clouds as ensembles of transient cores. | GARROD R.T., WILLIAMS D.A. and RAWLINGS J.M.C. | ||||
2006ApJ...642..954M | 11 | 7 | Correlation between nuclear spin ratio of cyclic C3H2and chemical evolution in TMC-1 cores. | MORISAWA Y., FUSHITANI M., KATO Y., et al. | |||||
2006ApJ...653.1369F | 25 | 23 | The initial conditions for gravitational collapse of a core: an extremely young low-mass class 0 protostar GF 9-2. | FURUYA R.S., KITAMURA Y. and SHINNAGA H. | |||||
2006MNRAS.373..577G | 2 | 1 | Dense and diffuse gas in dynamically active clouds. | GARROD R.T., WILLIAMS D.A. and RAWLINGS J.M.C. | |||||
2007MNRAS.376..779V | 187 | X | 5 | 3 | 5 | Dense core compression and fragmentation induced by the scattering of hydromagnetic waves. | VAN LOO S., FALLE S.A.E.G. and HARTQUIST T.W. | ||
2007ApJ...669..363F | 3 | 3 | 18 | Small structures via thermal instability of partially ionized plasma. I. Condensation mode. | FUKUE T. and KAMAYA H. | ||||
2008ApJS..175..277D | 15 | D | 7166 | 308 | The SCUBA legacy catalogues: submillimeter-continuum objects detected by SCUBA. | DI FRANCESCO J., JOHNSTONE D., KIRK H., et al. | |||
2008A&A...484..275V | 213 | A | X | 6 | 2 | 11 | The effect of ambipolar resistivity on the formation of dense cores. | VAN LOO S., FALLE S.A.E.G., HARTQUIST T.W., et al. | |
2011MNRAS.414..470N | 40 | X | 1 | 2 | 10 | Formation of low-mass condensations in molecular cloud cores via thermal instability. | NEJAD-ASGHAR M. | ||
2013A&A...555A..41M | 39 | X | 1 | 37 | 8 | Dynamics, CO depletion, and deuterium fractionation of the dense condensations within the fragmented prestellar core Orion B9-SMM 6. | MIETTINEN O. and OFFNER S.S.R. | ||
2016A&A...590A..75F | 1284 | A | D | S X C | 31 | 36 | 15 | 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. |
2018ApJ...854..116S | 41 | X | 1 | 13 | 10 | Complex organic molecules in Taurus Molecular Cloud-1. | SOMA T., SAKAI N., WATANABE Y., et al. | ||
2019ApJ...879...88D | 125 | X | 3 | 13 | ~ | Discovery of CCS velocity-coherent substructures in the Taurus Molecular Cloud 1. | DOBASHI K., SHIMOIKURA T., OCHIAI T., et al. |