LDN 57 , the SIMBAD biblio

LDN 57 , the SIMBAD biblio (309 results) C.D.S. - SIMBAD4 rel 1.8 - 2023.09.29CEST18:38:58


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
1927Barn..C......0B viz 355 ~ A photographic Atlas of selected regions of the Milky Way. BARNARD E.E.
1962ApJS....7....1L viz 1829 890 Catalogue of dark nebulae. LYNDS B.T.
1974AJ.....79...42B 1 8 71 Optical data for selected Barnard objects. BOK B.J. and McCARTHY C.C.
1977PASP...89..597B 1 13 83 Dark nebulae, globules, and protostars. BOK B.J.
1978ApJ...221L.117H 33 30 Ammonia survey of small dark clouds. HO P.T.P., MARTIN R.N. and BARRETT A.H.
1980ApJ...236..192V 1 5 30 Collapsing cloud models for Bok globules. VILLERE K.R. and BLACK D.C.
1982ApJ...262..583L 1 15 146 On the origin and structure of isolated dark globules. LEUNG C.M., KUTNER M.L. and MEAD K.N.
1984Mercu..13...50R 5 0 Bok globules. REIPURTH B.
1985PASJ...37..537O 20 2 A survey of southern Bok globules for H-alpha emission stars. OGURA K. and HIDAYAT B.
1987ApJ...312..848A 9 15 Observations of globules and dark clouds in the CO J = 3-2 and J = 2-1 lines. AVERY L.W., WHITE G.J., WILLIAMS I.P., et al.
1987ApJS...64..127K viz 46 10 A Palomar Observatory Sky Survey Atlas of selected molecular clouds. KLINGLESMITH D.A. and HOLLIS J.M.
1987AcASn..28...95W 18 2 High velocity-resolution observations of CO line in 18 southern dark clouds. WANG J.-S. and OTRUPCEK R.E.
1988ApJ...334..761M 4 4 64 The turbulent interstellar medium and pressure-bounded molecular clouds. MALONEY P.
1988ApJS...68..257C 307 291 A catalog of small, optically selected molecular clouds: optical, infrared, and millimeter properties. CLEMENS D.P. and BARVAINIS R.
1988MNRAS.235..139P 150 36 IRAS associations with dark clouds of opacity class 6. PARKER N.D.
1989ApJ...337..293L 1 4 17 Using far-infrared limb brightening to probe isolated dark globules. LEUNG C.M., O'BRIEN E.V. and DUBISCH R.
1989ApJS...71...89B 289 626 A survey for dense cores in dark clouds. BENSON P.J. and MYERS P.C.
1991ApJS...75..877C 249 108 Bok globules and small molecular clouds: deep IRAS photometry and 12CO spectroscopy CLEMENS D.P., YUN J.L. and HEYER M.H.
1991MNRAS.249..763S 96 17 A new water maser source in LBN 594. SCAPPINI F., CASELLI P. and PALUMBO G.G.C.
1992AuJPh..45..411M 25 0 Star formation in the galaxy. McGREGOR P.J.
1993A&A...275..563P 66 4 Low-mass protostellar condensations in magnetized molecular clouds. PORRO I. and SILVESTRO G.
1993S&T....85e..18L 8 ~ Deciphering the mysteries of stellar origins. LADA C.
1995A&AS..113..325H viz 262 42 Distance measurements of Lynds galactic dark nebulae. HILTON J. and LAHULLA J.F.
1995ApJ...454..217W 40 52 Collapse candidates among the Bok globules. WANG Y., EVANS II N.J., ZHOU S., et al.
1996A&A...314..258R 55 58 Protostellar candidates in southern molecular clouds. REIPURTH B., NYMAN L.-A. and CHINI R.
1997A&A...326..329L 123 126 Millimetre dust emission from northern Bok globules. LAUNHARDT R. and HENNING T.
1997MNRAS.291..337C 39 7 SO observations towards Bok globules. CODELLA C. and MUDERS D.
1997CoKon.100..223P 58 0 Regions of low-mass star formation. PFAU W.
1998ApJ...506..743B 66 110 Dense cores in dark clouds. XI. A survey for N2H+, C3H2, and CCS. BENSON P.J., CASELLI P. and MYERS P.C.
1998ApJS..119...59L 50 49 CS emission from Bok globules: survey results. LAUNHARDT R., EVANS II N.J., WANG Y., et al.
1999ApJS..123..233L viz 698 201 A catalog of optically selected cores. LEE C.W. and MYERS P.C.
1999ApJS..125..161J viz 370 374 Dense cores mapped in ammonia: a database. JIJINA J., MYERS P.C. and ADAMS F.C.
2000A&A...361..555B 3 25 229 An ISOCAM absorption survey of the structure of pre-stellar cloud cores. BACMANN A., ANDRE P., PUGET J.-L., et al.
2000LAstr.114..298M 2 0 F-HOU, un programme educatif pour l'enseignement secondaire. MELCHIOR A.-L.
2000AAS...197.1019W 4 0 Pre-protostellar core properties from Far-IR observations. WILLACY K. and LANGER W.D.
2001A&A...377.1023L 14 6 260 Mapping the interstellar dust with near-infrared observations: An optimized multi-band technique. LOMBARDI M. and ALVES J.
2001ApJ...557..714L 37   K                 6 12 Preprotostellar core properties from far-infrared observations. LANGER W.D. and WILLACY K.
2001ApJ...563..903H 2 7 57 Structure of protostellar collapse candidate B335 derived from near-infrared extinction maps. HARVEY D.W.A., WILNER D.J., LADA C.J., et al.
2001Msngr.106...40N 24 27 SIMBA explores the Southern sky. NYMAN L.-A., LERNER M., NIELBOCK M., et al.
2001Natur.409..140R 2 0 The dark cradles of stars. REIPURTH B.
2001Natur.409..159A 20 6 367 Internal structure of a cold dark molecular cloud inferred from the extinction of background starlight. ALVES J.F., LADA C.J. and LADA E.A.
2002A&A...391..275H 111 T K     O           7 27 C18O abundance in the nearby globule
Barnard 68.
HOTZEL S., HARJU J., JUVELA M., et al.
2002A&A...395L...5H 112 T K                 4 25 The kinetic temperature of
Barnard 68.
HOTZEL S., HARJU J. and JUVELA M.
2002A&A...395..321S 4 2 Gravitational collapse of nonsingular logatropic spheres. SIGALOTTI L. DI G., DE FELICE F. and SIRA E.
2002A&A...395..663T 23 4 Extending the limits of globule detection. ISOPHOT Serendipity Survey observations of interstellar clouds II. TOTH L.V., KISS C., JUVELA M., et al.
2002AJ....124.2178R 1 10 35 A near-infrared imaging survey of Coalsack globule 2. RACCA G., GOMEZ M. and KENYON S.J.
2002AJ....124.2749D 116 T K                 1 18 Abundances of molecular species in
Barnard 68.
DI FRANCESCO J., HOGERHEIJDE M.R., WELCH W.J., et al.
2002AJ....124.2756V 128 100 Completion of a SCUBA survey of Lynds dark clouds and implications for low-mass star formation. VISSER A.E., RICHER J.S. and CHANDLER C.J.
2002ApJ...570L.101B 63   K                 4 316 N2H+ and C18O depletion in a cold dark cloud. BERGIN E.A., ALVES J., HUARD T., et al.
2002ApJ...572..238C 2 68 498 Dense cores in dark clouds. XIV. N2H+ (1-0) maps of dense cloud cores. CASELLI P., BENSON P.J., MYERS P.C., et al.
2002ApJ...581L.105B 2 5 36 Sensitive limits on the water abundance in cold low-mass molecular cores. BERGIN E.A. and SNELL R.L.
2002MNRAS.329..257W 1 20 112 The initial conditions of isolated star formation - V. ISOPHOT imaging and the temperature and energy balance of pre-stellar cores. WARD-THOMPSON D., ANDRE P. and KIRK J.M.
2002AAS...201.3402L 73 T                   1 1 The dynamical state of
Barnard 68: a thermally supported, pulsating dark cloud.
LADA C.J., BERGIN E.A., ALVES J.F., et al.
2003A&A...399L..43B 119 T K                 2 52 Dust emissivity in the submm/mm SCUBA and SIMBA observations of
Barnard 68.
BIANCHI S., GONCALVES J., ALBRECHT M., et al.
2003AJ....125.1519F 17 6 Collisional dynamics of stellar systems in the Northern and Southern Coalsack regions. FRESNEAU A., VAUGHAN A.E. and ARGYLE R.W.
2003AJ....126..311L 112 T K                 6 31 The physical and chemical status of pre-protostellar core
B68.
LAI S.-P., VELUSAMY T., LANGER W.D., et al.
2003ApJ...582..830B 21 27 A survey of 557 GHz water vapor emission in the NGC 1333 molecular cloud. BERGIN E.A., KAUFMAN M.J., MELNICK G.J., et al.
2003ApJ...586..286L 111 T                   1 113 The dynamical state of
Barnard 68: a thermally supported, pulsating dark cloud.
LADA C.J., BERGIN E.A., ALVES J.F., et al.
2003ApJ...588..894S 1 6 22 A coupled dynamical and chemical model of starless cores of magnetized molecular clouds. II. Chemical differentiation. SHEMATOVICH V.I., WIEBE D.S., SHUSTOV B.M., et al.
2003ApJ...592..188B 16 2 99 Dynamic cores in hydrostatic disguise. BALLESTEROS-PAREDES J., KLESSEN R.S. and VAZQUEZ-SEMADENI E.
2003ApJ...595..842K 9 1 28 Nonlinear hydromagnetic wave support of a stratified molecular cloud. KUDOH T. and BASU S.
2003ApJ...598.1112H 1 6 33 Envelope structure of starless core L694-2 derived from a near-infrared extinction map. HARVEY D.W.A., WILNER D.J., LADA C.J., et al.
2004A&A...415..203S 25 3 227 Cosmic ray induced explosive chemical desorption in dense clouds. SHEN C.J., GREENBERG J.M., SCHUTTE W.A., et al.
2004A&A...421.1087H viz         O           16 24 The relationship of CO abundance to extinction and N(H2): Observations of globules and the dependence on star formation activity. HARJUNPAEAE P., LEHTINEN K. and HAIKALA L.K.
2004ApJ...609..459G 3 6 66 Dissociative recombination of N2H+: evidence for fracture of the NN bond. GEPPERT W.D., THOMAS R., SEMANIAK J., et al.
2004ApJ...610..303L 2 5 32 Discovery of a dusty ring in the Coalsack: a dense core caught in the act of formation. LADA C.J., HUARD T.L., CREWS L.J., et al.
2004ApJ...617..425D 30 52 Quiescent dense gas in protostellar clusters: the Ophiuchus A core. DI FRANCESCO J., ANDRE P. and MYERS P.C.
2004MNRAS.355..248B 5 2 34 The formation and evolution of protostellar discs : three-dimensional adaptive mesh refinement hydrosimulations of collapsing, rotating Bonnor-Ebert spheres. BANERJEE R., PUDRITZ R.E. and HOLMES L.
2004MmSAI..75..509F 74 T                   6 4 Observations of the darkest regions in the sky: X-ray shadowing by the Bok globule
Barnard 68.
FREYBERG M.J., BREITSCHWERDT D. and ALVES J.
2004ARep...48..315P 4 11 A method for molecular-line radiative-transfer computations and its application to a two-dimensional model for the starless core L1544. PAVLYUCHENKOV Y.N. and SHUSTOV B.M.
2004ARep...48..705K 7 0 The effect of the ionization rate on the chemical composition of dense cores of dark molecular clouds. KIRSANOVA M.S. and WIEBE D.S.
2004RvMP...76..125M 11 43 1512 Control of star formation by supersonic turbulence. MAC LOW M.-M. and KLESSEN R.S.
2005A&A...434..167S 4 3 27 3D continuum radiative transfer in complex dust configurations. II. 3D structure of the dense molecular cloud core ρ Oph D. STEINACKER J., BACMANN A., HENNING T., et al.
2005A&A...437..159L 27 8 A cold globule with a Class 0/I embedded source. ISO observations of the dark cloud DC 303.8-14.2. LEHTINEN K., MATTILA K. and LEMKE D.
2005A&A...437..447D 1 9 27 Is the Galactic submillimeter dust emissivity underestimated? DASYRA K.M., XILOURIS E.M., MISIRIOTIS A., et al.
2005AJ....130.2166K 2 22 125 Near-infrared imaging survey of Bok globules: density structure. KANDORI R., NAKAJIMA Y., TAMURA M., et al.
2005ApJ...619..379C 4 36 329 Probing the evolutionary status of starless cores through N2H+ and N2D+ observations. CRAPSI A., CASELLI P., WALMSLEY C.M., et al.
2005ApJ...620..800D 7 4 59 Molecular line profile fitting with analytic radiative transfer models. DE VRIES C.H. and MYERS P.C.
2005ApJ...621L..33O 18 4 147 Competition between CO and N2desorption from interstellar ices. OBERG K.I., VAN BROEKHUIZEN F.A., FRASER H.J., et al.
2005ApJ...623..280M 1 16 43 Centrally condensed collapse of starless cores. MYERS P.C.
2005ApJ...624..254S 15 27 Density and temperature structure of TMC-1C from 450 and 850 micron maps. SCHNEE S. and GOODMAN A.
2005ApJ...626..940H 7 10 157 A combined experimental and theoretical study on the formation of the amino acid glycine (NH2CH2COOH) and its isomer (CH3NHCOOH) in extraterrestrial ices. HOLTOM P.D., BENNETT C.J., OSAMURA Y., et al.
2005ApJ...628..789D viz         O           15 9 High-resolution molecular line observations of the environment of the class 0 source B1-IRS. DE GREGORIO-MONSALVO I., CHANDLER C.J., GOMEZ J.F., et al.
2005ApJ...629..276T 1 18 37 From dusty filaments to cores to stars: an infrared extinction study of Lupus 3. TEIXEIRA P.S., LADA C.J. and ALVES J.F.
2005ApJ...631..411N 4 11 99 Quiescent cores and the efficiency of turbulence-accelerated, magnetically regulated star formation. NAKAMURA F. and LI Z.-Y.
2005ApJ...632..982S 1 21 71 Modeling the physical structure of the low-density pre-protostellar core Lynds 1498. SHIRLEY Y.L., NORDHAUS M.K., GRCEVICH J.M., et al.
2005ApJ...635.1151K 40   K                 6 42 Dark cloud cores and gravitational decoupling from turbulent flows. KETO E. and FIELD G.
2005MNRAS.360.1506K 1 72 189 The initial conditions of isolated star formation - VI. SCUBA mapping of pre-stellar cores. KIRK J.M., WARD-THOMPSON D. and ANDRE P.
2005AN....326R.664P 74 T                   1 0 Photon Dominated Region Modelling of
Barnard 68.
PINEDA J.L. and BENSCH F.
2005NewA...11..138A 74 T                   2 0 Chemical model for dense portion of the nearby globule Barnard (
B68).
AMIN M.Y. and EL-NAWAWY M.S.
2006A&A...451..141H 5 6 A dynamical model for the dusty ring in the Coalsack. HENNEBELLE P., WHITWORTH A.P. and GOODWIN S.P.
2006A&A...454L..59H 112 T K     O           8 9 Probable detection of H2D+ in the starless core
Barnard 68.
HOGERHEIJDE M.R., CASELLI P., EMPRECHTINGER M., et al.
2006AJ....132.1322G viz 252 16 A sensitive survey for water maser emission toward Bok globules using the Robledo 70 M antenna. GOMEZ J.F., DE GREGORIO-MONSALVO I., SUAREZ O., et al.
2006ApJ...640..391H 1 15 40 Deep near-infrared observations of L1014: revealing the nature of the core and its embedded source. HUARD T.L., MYERS P.C., MURPHY D.C., et al.
2006ApJ...645..369B 118 T K                 4 50 The thermal structure of gas in prestellar cores: a case study of
Barnard 68.
BERGIN E.A., MARET S., VAN DER TAK F.F.S., et al.
2006ApJ...645.1198V 1 16 37 The distribution of ortho-H2D+(11,0-11,1) in L1544: tracing the deuteration factory in prestellar cores. VASTEL C., CASELLI P., CECCARELLI C., et al.
2006ApJ...645.1212P 10 19 CB 17: inferring the dynamical history of a prestellar core with chemodynamical models. PAVLYUCHENKOV Y., WIEBE D., LAUNHARDT R., et al.
2006MNRAS.370L...1R 82 T                   2 30 Oscillations in the stable starless core
Barnard 68.
REDMAN M.P., KETO E. and RAWLINGS J.M.C.
2006ApJ...652.1366K 3 5 39 Oscillations of starless cores. KETO E., BRODERICK A.E., LADA C.J., et al.
2006A&A...460..709F 26 47 Searching for massive pre-stellar cores through observations of N2H+ and N2D+. FONTANI F., CASELLI P., CRAPSI A., et al.
2006MNRAS.373.1091B 3 6 38 Supersonic turbulence, filamentary accretion and the rapid assembly of massive stars and discs. BANERJEE R., PUDRITZ R.E. and ANDERSON D.W.
2007A&A...462..221A 3 4 25 The depletion of NO in pre-protostellar cores. AKYILMAZ M., FLOWER D.R., HILY-BLANT P., et al.
2007A&A...462..677S 43 7 A VLA search for young protostars embedded in dense cores. STAMATELLOS D., WARD-THOMPSON D., WHITWORTH A.P., et al.
2007MNRAS.375..843K 51 34 The initial conditions of isolated star formation - VII. Spitzer mapping of pre-stellar cores. KIRK J.M., WARD-THOMPSON D. and ANDRE P.
2007ApJ...661..262D 4 14 113 The virial balance of clumps and cores in molecular clouds. DIB S., KIM J., VAZQUEZ-SEMADENI E., et al.
2007ApJ...661..304H 2 7 33 An XMM-Newton observation of the Local Bubble using a shadowing filament in the southern Galactic hemisphere. HENLEY D.B., SHELTON R.L. and KUNTZ K.D.
2007A&A...466..969L         O           21 19 ISO far-infrared observations of the high-latitude cloud L 1642. II. Correlated variations of far-infrared emissivity and temperature of ``classical large'' dust particles. LEHTINEN K., JUVELA M., MATTILA K., et al.
2007A&A...466.1005A 46           X         1 3 50 Desorption of CO and O2 interstellar ice analogs. ACHARYYA K., FUCHS G.W., FRASER H.J., et al.
2007A&A...470..615P 966 T K A     X C       24 3 14 Photon-dominated region modeling of the CO and [CI] line emission in
Barnard 68.
PINEDA J.L. and BENSCH F.
2007ApJ...664..956M 39   K                 9 28 The ionization fraction of
Barnard 68: implications for star and planet formation.
MARET S. and BERGIN E.A.
2007ApJ...665..457A 17 25 The dynamical state of the starless dense core FeSt 1-457: a pulsating globule? AGUTI E.D., LADA C.J., BERGIN E.A., et al.
2007MNRAS.379.1390S 39           X         1 21 55 The dust temperatures of the pre-stellar cores in the ρ Oph main cloud and in other star-forming regions: consequences for the core mass function. STAMATELLOS D., WHITWORTH A.P. and WARD-THOMPSON D.
2007ApJ...666L..73C 36 47 The relationship between the optical depth of the 9.7 µm silicate absorption feature and infrared differential extinction in dense clouds. CHIAR J.E., ENNICO K., PENDLETON Y.J., et al.
2007ApJ...669L.101P 8 9 Do we need to know the temperature in prestellar cores? PAVLYUCHENKOV Y., HENNING T. and WIEBE D.
2007ApJ...670L..25M 114 T K                 4 13 Using chemistry to unveil the kinematics of starless cores: complex radial motions in
Barnard 68.
MARET S., BERGIN E.A. and LADA C.J.
2007A&A...475..901K 41           X         1 9 60 OVII and OVIII line emission in the diffuse soft X-ray background: heliospheric and galactic contributions. KOUTROUMPA D., ACERO F., LALLEMENT R., et al.
2007ARA&A..45..339B 12 30 762 Cold dark clouds : the initial conditions for star formation. BERGIN E.A. and TAFALLA M.
2007ApJ...671.1820M 76         O X         2 13 33 The nature of the dense core population in the pipe nebula: core and cloud kinematics from C18O observations. MUENCH A.A., LADA C.J., RATHBORNE J.M., et al.
2007ApJ...671.1832B 590     A     X C       15 3 17 Oscillating starless cores: nonlinear regime. BRODERICK A.E., KETO E., LADA C.J., et al.
2007ApJ...671.1839S 377           X         10 17 27 TMC-1C: an accreting starless core. SCHNEE S., CASELLI P., GOODMAN A., et al.
2008A&A...477..547K 38           X         1 25 33 Clumpy photon-dominated regions in Carina. I. [CI] and mid-J CO lines in two 4'x4' fields. KRAMER C., CUBICK M., ROELLIG M., et al.
2008MNRAS.383..375C 38           X         1 21 37 Spatial distribution of stars and brown dwarfs in σ Orionis. CABALLERO J.A.
2008ApJ...672..410L 8 11 192 The nature of the dense core population in the Pipe nebula: thermal cores under pressure. LADA C.J., MUENCH A.A., RATHBORNE J., et al.
2008ApJS..174..396R 39           X         1 10 38 The nature of the dense core population in the pipe nebula: a survey of NH3, CCS, and HC5 N molecular line emission. RATHBORNE J.M., LADA C.J., MUENCH A.A., et al.
2008ApJ...674..209K 38           X         1 12 16 The X-ray-emitting components toward l = 111°: the Local Hot Bubble and beyond. KUNTZ K.D. and SNOWDEN S.L.
2008ApJ...674.1242Z 8 1 16 Formation of nitrogen and hydrogen-bearing molecules in solid ammonia and implications for solar system and interstellar ices. ZHENG W., JEWITT D., OSAMURA Y., et al.
2008ApJS..175..277D viz 76             C       1 7176 308 The SCUBA legacy catalogues: submillimeter-continuum objects detected by SCUBA. DI FRANCESCO J., JOHNSTONE D., KIRK H., et al.
2006Natur.442..425M 25 1 51 A low fraction of nitrogen in molecular form in a dark cloud. MARET S., BERGIN E.A. and LADA C.J.
2008A&A...482..535H 77           X         2 5 17 Detection of 6 K gas in Ophiuchus D. HARJU J., JUVELA M., SCHLEMMER S., et al.
2005PASA...22..199B 38           X         1 21 44 Science programs for a 2-m class telescope at Dome C, Antartica: PILOT, the Pathfinder for an International Large Optical Telescope. BURTON M.G., LAWRENCE J.S., ASHLEY M.C.B., et al.
2008ApJ...680..466G 9 2 Star formation near photodissociation regions: detection of a peculiar protostar near Cederblad 201. GOICOECHEA J.R., BERNE O., GERIN M., et al.
2008ApJ...681.1318Q 39           X         1 7 19 New theoretical results concerning the interstellar abundance of molecular oxygen. QUAN D., HERBST E., MILLAR T.J., et al.
2008ApJ...682.1095B 326     A     X C       8 6 9 The damping rates of embedded oscillating starless cores. BRODERICK A.E., NARAYAN R., KETO E., et al.
2008ApJ...683..238K 389           X         10 5 100 The different structures of the two classes of starless cores. KETO E. and CASELLI P.
2008A&A...488..597H 38           X         1 9 6 Chemical and physical small-scale structure in a pre-stellar core. HEITHAUSEN A., BOETTNER C. and WALTER F.
2008A&A...487..975V 38           X         1 22 10 Modeling water emission from low-mass protostellar envelopes. VAN KEMPEN T.A., DOTY S.D., VAN DISHOECK E.F., et al.
2008ApJ...684.1221H 38           X         1 13 22 Simultaneous determination of the cosmic ray ionization rate and fractional ionization in DR 21(OH). HEZAREH T., HOUDE M., McCOEY C., et al.
2007SerAJ.175....1N 6 1 HCO+ in dark molecular clouds. NIKOLIC S.
2007A&G....48a..25W 64 15 Molecules, ices and astronomy. WILLIAMS D.A., BROWN W.A., PRICE S.D., et al.
2008A&A...490.1157V 124           X C       2 5 106 A Swedish heterodyne facility instrument for the APEX telescope. VASSILEV V., MELEDIN D., LAPKIN I., et al.
2008ApJ...689.1448R 39           X         1 12 27 Nitrogen isotopic fractionation of interstellar nitriles. RODGERS S.D. and CHARNLEY S.B.
2008A&A...492..703C 661       D     X C       17 28 115 Survey of ortho-H2D+ (11,0-11,1) in dense cloud cores. CASELLI P., VASTEL C., CECCARELLI C., et al.
2009ApJ...690.1497H 415     A S   X         10 12 286 Water, O2, and ice in molecular clouds. HOLLENBACH D., KAUFMAN M.J., BERGIN E.A., et al.
2009ApJ...690.1659R 76           X         2 9 5 The dense ring in the Coalsack: the merging of two subsonic flows? RATHBORNE J.M., LADA C.J., WALSH W., et al.
2009ApJ...692...91G 43           X         1 15 168 The "True" column density distribution in star-forming molecular clouds. GOODMAN A.A., PINEDA J.E. and SCHNEE S.L.
2009ApJ...693L..81M viz 115           X C       2 40 114 Observational 5-20 µm interstellar extinction curves toward star-forming regions derived from Spitzer IRS spectra. McCLURE M.
2009ApJ...695.1308B 1668 T K A     X C F     41 2 21 The inevitable future of the starless core Barnard 68. BURKERT A. and ALVES J.
2009ApJ...695.1505M 76             C       1 30 5 The molecular emission of the irradiated star-forming core ahead of HH 80N. MASQUE J.M., GIRART J.M., BELTRAN M.T., et al.
2009ApJ...696..484B 76           X         2 87 110 Mid-infrared extinction mapping of infrared dark clouds: probing the initial conditions for massive stars and star clusters. BUTLER M.J. and TAN J.C.
2009ApJ...696.2234S 432           X C F     9 7 170 The effect of Line-of-Sight temperature variation and noise on dust continuum observations. SHETTY R., KAUFFMANN J., SCHNEE S., et al.
2009MNRAS.395.1092D 758     A S   X C F     17 3 61 An analytic column density profile to fit prestellar cores. DAPP W.B. and BASU S.
2009A&A...498..771G 41           X         1 4 26 The ionization fraction gradient across the Horsehead edge: an archetype for molecular clouds. GOICOECHEA J.R., PETY J., GERIN M., et al.
2009ApJ...697.1457F 76           X         2 48 75 The initial conditions of clustered star formation. I. NH3Observations of dense cores in Ophiuchus. FRIESEN R.K., DI FRANCESCO J., SHIRLEY Y.L., et al.
2009MNRAS.396..579S 76           X         2 4 7 The approach to collapse of molecular clouds. STAHLER S.W. and YEN J.J.
2009ApJ...699..585H 358       D     X         10 147 62 A search for carbon-chain-rich cores in dark clouds. HIROTA T., OHISHI M. and YAMAMOTO S.
2009ApJ...699L.108L 76           X         2 4 4 Molecular line profiles from a core forming in a turbulent cloud. LEE J.-E. and KIM J.
2009A&A...500..845M 38           X         1 45 13 Prestellar and protostellar cores in Orion B9. MIETTINEN O., HARJU J., HAIKALA L.K., et al.
2009A&A...501..619P 125           X C       2 12 269 Cosmic-ray ionization of molecular clouds. PADOVANI M., GALLI D. and GLASSGOLD A.E.
2009MNRAS.397L..96C 78           X         2 4 23 Laboratory evidence for the non-detection of excited nascent H2 in dark clouds. CONGIU E., MATAR E., KRISTENSEN L.E., et al.
2009ApJ...703.1444R 969       D     X C F     24 72 7 A two micron all sky survey analysis of the stability of southern Bok globules. RACCA G.A., VILAS-BOAS J.W.S. and DE LA REZA R.
2009ApJ...704..292F 38           X         1 48 32 A Spitzer census of star formation activity in the Pipe Nebula. FORBRICH J., LADA C.J., MUENCH A.A., et al.
2009A&A...506.1243T 827   K A     X C       21 5 34 Constraining the ortho-to-para ratio of H2 with anomalous H2CO absorption. TROSCOMPT N., FAURE A., MARET S., et al.
2009ApJ...706L..46D 58           X         1 1 40 The early history of protostellar disks, outflows, and binary stars. DUFFIN D.F. and PUDRITZ R.E.
2009A&A...508..275C 45           X         1 9 133 Microscopic simulation of methanol and formaldehyde ice formation in cold dense cores. CUPPEN H.M., VAN DISHOECK E.F., HERBST E., et al.
2010ApJ...708..127S 39           X         1 11 43 The dust emissivity spectral index in the starless core TMC-1C. SCHNEE S., ENOCH M., NORIEGA-CRESPO A., et al.
2010ApJ...711..655J 39           X         1 9 33 Dense gas tracers in Perseus: relating the N2H+, NH3, and dust continuum properties of pre- and protostellar cores. JOHNSTONE D., ROSOLOWSKY E., TAFALLA M., et al.
2010ApJ...712L.116P 89           X         2 6 150 Direct observation of a sharp transition to coherence in dense cores. PINEDA J.E., GOODMAN A.A., ARCE H.G., et al.
2010ApJ...712.1137K 41           X         1 8 55 The mass-size relation from clouds to cores. I. A new probe of structure in molecular clouds. KAUFFMANN J., PILLAI T., SHETTY R., et al.
2010A&A...512A...3P         O           21 14 L1506: a prestellar core in the making. PAGANI L., RISTORCELLI I., BOUDET N., et al.
2010A&A...513A..41H 42           X         1 8 75 Nitrogen chemistry and depletion in starless cores. HILY-BLANT P., WALMSLEY M., PINEAU DES FORETS G., et al.
2010ApJ...716..299S 38           X         1 49 27 Near-infrared imaging polarimetry of the Serpens cloud core: magnetic field structure, outflows, and inflows in a cluster forming clump. SUGITANI K., NAKAMURA F., TAMURA M., et al.
2010ApJ...716..433K 387           X C       9 16 122 The mass-size relation from clouds to cores. II. Solar neighborhood clouds. KAUFFMANN J., PILLAI T., SHETTY R., et al.
2010A&A...516A..57K 38           X         1 21 21 Methanol maps of low-mass protostellar systems. I. The Serpens molecular core. KRISTENSEN L.E., VAN DISHOECK E.F., VAN KEMPEN T.A., et al.
2010ApJ...719..691F 768     A D     X C       20 43 14 Nothing to hide: an X-ray survey for young stellar objects in the Pipe nebula. FORBRICH J., POSSELT B., COVEY K.R., et al.
2010MNRAS.406.1253N 38           X         1 2 3 The future of low-mass condensations in the core of a molecular cloud. NEJAD-ASGHAR M.
2010ApJ...721..493B 38           X         1 5 9 The evolution of cloud cores and the formation of stars. BRODERICK A.E. and KETO E.
2010ApJ...721..686P 83           X         2 14 189 The relation between gas and dust in the Taurus molecular cloud. PINEDA J.L., GOLDSMITH P.F., CHAPMAN N., et al.
2010MNRAS.407.2434S 38           X         1 6 11 Molecular line profiles from contracting dense cores. STAHLER S.W. and YEN J.J.
2010ApJ...724..687L 53           X         1 19 584 On the star formation rates in molecular clouds. LADA C.J., LOMBARDI M. and ALVES J.F.
2010MNRAS.408.2426R 77           X         2 9 3 Investigating the effects of chemistry on molecular line profiles of infalling low-mass cores. ROBERTS J.F., RAWLINGS J.M.C. and STACE H.A.
2010A&A...521L..29C 1062     A S O X C       26 7 33 Water vapor toward starless cores: the Herschel view. CASELLI P., KETO E., PAGANI L., et al.
2010ApJ...725.2232R viz 39           X         1 12 31 Deep near-infrared survey of the Pipe nebula. II. Data, methods, and dust extinction maps. ROMAN-ZUNIGA C.G., ALVES J.F., LADA C.J., et al.
2011ApJ...727...13M 39           X         1 25 13 Distribution of water vapor in molecular clouds. MELNICK G.J., TOLLS V., SNELL R.L., et al.
2011A&A...525A...9O 39           X         1 9 3 Spectroscopic [CI] mapping of the infrared dark cloud G48.65-0.29. OSSENKOPF V., ORMEL C.W., SIMON R., et al.
2011A&A...525A.108H 1199     A D     X C       31 9 10 Searching for galactic hidden gas through interstellar scintillation: results from a test with the NTT-SOFI detector. HABIBI F., MONIEZ M., ANSARI R., et al.
2011A&A...526A.139S 47           X         1 1 16 Protostellar collapse of rotating cloud cores. Covering the complete first accretion period of the stellar core. SCHOENKE J. and TSCHARNUTER W.M.
2011ApJ...728..143S 161           X C       3 4 54 Observational constraints on submillimeter dust opacity. SHIRLEY Y.L., HUARD T.L., PONTOPPIDAN K.M., et al.
2011ApJ...729...92B 155           X C       3 73 119 Ice and dust in the quiescent medium of isolated dense cores. BOOGERT A.C.A., HUARD T.L., COOK A.M., et al.
2011PASP..123..138V 249       D     X         7 99 210 Water in star-forming regions with the Herschel space observatory (WISH). I. Overview of key program and first results. VAN DISHOECK E.F., KRISTENSEN L.E., BENZ A.O., et al.
2011ApJ...734...60L 271           X         7 44 22 Internal motions in starless dense cores. LEE C.W. and MYERS P.C.
2011ApJ...735L..32T 116           X         3 3 3 A new recipe for obtaining central volume densities of prestellar cores from size measurements. TASSIS K. and YORKE H.W.
2011ApJ...743...98M 77           X         2 13 21 Star formation in dense clusters. MYERS P.C.
2012ApJ...757L..11W 47           X         1 3 48 Isotopic anomalies in primitive solar system matter: spin-state-dependent fractionation of nitrogen and deuterium in interstellar clouds. WIRSTROM E.S., CHARNLEY S.B., CORDINER M.A., et al.
2012A&A...547A..11N 102 T K A   O X C       1 19 61 The Earliest Phases of Star formation (EPoS) observed with Herschel: the dust temperature and density distributions of
B68.
NIELBOCK M., LAUNHARDT R., STEINACKER J., et al.
2013ApJ...763...45H 39           X         1 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.
2013ApJ...765...18T 39           X         1 22 28 Resolved depletion zones and spatial differentiation of N2H+ and N2D+. TOBIN J.J., BERGIN E.A., HARTMANN L., et al.
2013A&A...550A.127T 42           X         1 8 50 Water ice deuteration: a tracer of the chemical history of protostars. TAQUET V., PETERS P.S., KAHANE C., et al.
2013MNRAS.430..961K 119           X         3 2 4 Thermal effects in the initial collapse of low-mass molecular cloud cores. KHESALI A., NEJAD-ASGHAR M. and MOHAMMADPOUR M.
2013MNRAS.430.1854A 118           X         3 11 7 Does a prestellar core always become Tracing ? protostellar the evolution of cores from the prestellar to protostellar phase. ANATHPINDIKA S. and DI FRANCESCO J.
2013A&A...551A..38P 82           X         2 5 33 Ortho-H2 and the age of prestellar cores. PAGANI L., LESAFFRE P., JORFI M., et al.
2013A&A...551A..98L 1196       D     X C       30 66 124 The Earliest Phases of Star Formation (EPoS): a Herschel key project. The thermal structure of low-mass molecular cloud cores. LAUNHARDT R., STUTZ A.M., SCHMIEDEKE A., et al.
2013MNRAS.431.1296R 40           X         1 18 53 CO abundance variations in the Orion Molecular Cloud. RIPPLE F., HEYER M.H., GUTERMUTH R., et al.
2013A&A...552A..93H 79           X         2 3 5 Simulation of optical interstellar scintillation. HABIBI F., MONIEZ M., ANSARI R., et al.
2013ApJ...770...51B 39           X         1 10 19 Triggering collapse of the presolar dense cloud core and injecting short-lived radioisotopes with a shock wave. II. Varied shock wave and cloud core parameters. BOSS A.P. and KEISER S.A.
2013A&A...553A.115B viz 645       D     X C       16 17 30 Fragmentation and dynamical collapse of the starless high-mass star-forming region IRDC 18310-4. BEUTHER H., LINZ H., TACKENBERG J., et al.
2013A&A...555A.140S 39           X         1 12 19 Determination of the far-infrared dust opacity in a prestellar core. SUUTARINEN A., HAIKALA L.K., HARJU J., et al.
2013MNRAS.435.1493A 39           X         1 35 40 Using [CI] to probe the interstellar medium in z ∼ 2.5 sub-millimeter galaxies. ALAGHBAND-ZADEH S., CHAPMAN S.C., SWINBANK A.M., et al.
2013MNRAS.435.1701C 130     A     X         3 1 57 Molecular cloud evolution - V. Cloud destruction by stellar feedback. COLIN P., VAZQUEZ-SEMADENI E. and GOMEZ G.C.
2013ApJ...777..121S 94       D       C       4 28 6 Correlating infall with deuterium fractionation in dense cores. SCHNEE S., BRUNETTI N., DI FRANCESCO J., et al.
2013A&A...559A..53M 315         O X         8 11 14 Chemical modeling of the L1498 and L1517B prestellar cores: CO and HCO+ depletion. MARET S., BERGIN E.A. and TAFALLA M.
2013A&A...560A..41L 1275       D     X C       32 13 24 Gas-phase CO depletion and N2H+ abundances in starless cores. LIPPOK N., LAUNHARDT R., SEMENOV D., et al.
2014A&A...562A.138R 2197 T K A D S   X C       53 4 104 Reconstructing the density and temperature structure of prestellar cores from Herschel data: A case study for
B68 and L1689B.
ROY A., ANDRE P., PALMEIRIM P., et al.
2014A&A...563A..97G viz 45           X         1 9 98 Chemical evolution in the early phases of massive star formation. I. GERNER T., BEUTHER H., SEMENOV D., et al.
2014MNRAS.441.1468K 40           X         1 3 4 From filaments to oscillating starless cores. KETO E. and BURKERT A.
2014ApJ...790...70K 42           X         1 3 13 On the role of ambient environments in the collapse of bonnor-ebert spheres. KAMINSKI E., FRANK A., CARROLL J., et al.
2014ApJ...790..129C 755       S   X         18 30 5 Physical and chemical characteristics of L1689-SMM16, an oscillating prestellar core in Ophiuchus. CHITSAZZADEH S., DI FRANCESCO J., SCHNEE S., et al.
2014ApJ...794..123C 46           X         1 4 51 Exclusion of cosmic rays in protoplanetary disks. II. Chemical gradients and observational signatures. CLEEVES L.I., BERGIN E.A. and ADAMS F.C.
2014ApJ...795...26O 41           X         1 3 7 Photon-dominated region modeling of the [C I], [C II], and CO line emission from a boundary in the Taurus molecular cloud. ORR M.E., PINEDA J.L. and GOLDSMITH P.F.
2014MNRAS.445.1170G 40           X         1 53 6 Early-stage star-forming cloud cores in Galactic Legacy Infrared Mid-Plane Survey (GLIMPSE) extended green objects (EGOs) as traced by organic species. GE J.X., HE J.H., CHEN X., et al.
2014ApJ...797..113S 41           X         1 6 12 The effects of initial abundances on nitrogen in protoplanetary disks. SCHWARZ K.R. and BERGIN E.A.
2014A&A...572A..20L 16       D   O           1 292 24 Dust properties inside molecular clouds from coreshine modeling and observations. LEFEVRE C., PAGANI L., JUVELA M., et al.
2015ApJ...799...49H 40           X         1 16 15 Formation of hydroxylamine on dust grains via ammonia oxidation. HE J., VIDALI G., LEMAIRE J.-L., et al.
2015A&A...574L...5P 85         O X         2 3 17 Can we trace very cold dust from its emission alone? PAGANI L., LEFEVRE C., JUVELA M., et al.
2015ApJS..217....7S viz 40           X         1 809 19 Catalog of dense cores in the Orion A giant molecular cloud. SHIMAJIRI Y., KITAMURA Y., NAKAMURA F., et al.
2015ApJ...804...98K 47           X         1 6 46 The deuterium fractionation timescale in dense cloud cores: a parameter space exploration. KONG S., CASELLI P., TAN J.C., et al.
2015ApJ...806...38S 40           X         1 19 4 The kinematic and chemical properties of a potential core-forming clump: Perseus B1-E. SADAVOY S.I., SHIRLEY Y., DI FRANCESCO J., et al.
2015MNRAS.449.3183Z 105     A     X         3 1 1 Sound-triggered collapse of stably oscillating low-mass cores in a two-phase interstellar medium. ZHANG U.-H., SCHIVE H.-Y. and CHIUEH T.
2015ApJ...806..196K 1140   K   D     X C       28 9 8 Ice chemistry in starless molecular cores. KALVANS J.
2015ApJ...806..274L 40           X         1 8 1 Is the dust cloud around lambda Orionis a ring or a shell, or both? LEE D., SEON K.-I. and JO Y.-S.
2015A&A...580A.114F 828     A S   X         20 9 11 Smoke in the Pipe Nebula: dust emission and grain growth in the starless core FeSt 1-457. FORBRICH J., LADA C.J., LOMBARDI M., et al.
2015NewA...40...49B 96       D       C       3 6 3 A theoretical model for electromagnetic characterization of a spherical dust molecular cloud equilibrium structure. BORAH B. and KARMAKAR P.K.
2015MNRAS.452.3319N 42           X         1 1 2 The chemical stability of CH3OH on cold interstellar grains: heat-induced dehydrogenation processes of methanol. NOURRY S. and KRIM L.
2015MNRAS.454.2815L 83           X         2 3 9 General polytropic dynamic cylinder under self-gravity. LOU Y.-Q.
2015A&A...584A..91K viz 161           X C       3 770 344 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.
2016ApJ...822...10K 41           X         1 12 3 Geometry-independent determination of radial density distributions in molecular cloud cores and other astronomical objects. KRCO M. and GOLDSMITH P.F.
2016A&A...588A.104G viz 41           X         1 221 11 Molecular clouds and star formation toward the Galactic plane within 216.25deg ≤ l ≤ 218.75deg and -0.75deg ≤ b ≤ 1.25deg. GONG Y., MAO R.Q., FANG M., et al.
2016MNRAS.458..789T 41           X         1 13 4 Chemistry as a diagnostic of prestellar core geometry. TRITSIS A., TASSIS K. and WILLACY K.
2016ApJ...824...85K 81           X         2 23 1 Dense molecular cores being externally heated. KIM G., LEE C.W., GOPINATHAN M., et al.
2016A&A...590A...2S 48   K                 1 14 105 Slingshot mechanism in Orion: Kinematic evidence for ejection of protostars by filaments. STUTZ A.M. and GOULD A.
2016ApJ...825...91L viz 406           X C       9 55 6 Protostars at low extinction in Orion A. LEWIS J.A. and LADA C.J.
2016ApJ...826...26T 42           X         1 14 16 Revealing a detailed mass distribution of a high-density core MC27/L1521F in Taurus with ALMA. TOKUDA K., ONISHI T., MATSUMOTO T., et al.
2016A&A...592A..61L viz 1194       D     X C       29 23 10 Earliest phases of star formation (EPoS) Dust temperature distributions in isolated starless cores. LIPPOK N., LAUNHARDT R., HENNING T., et al.
2016A&A...593A...6S 285           X         7 5 6 Prestellar core modeling in the presence of a filament. The dense heart of L1689B. STEINACKER J., BACMANN A., HENNING T., et al.
2016ApJ...830..102W 41           X         1 15 2 A search for O2 in CO-depleted molecular cloud cores with Herschel. WIRSTROM E.S., CHARNLEY S.B., CORDINER M.A., et al.
2016ApJ...830..151S 81           X         2 3 2 On the inference of the cosmic-ray ionization rate ζ from the HCO+-to-DCO+ abundance ratio: the effect of nuclear spin. SHINGLEDECKER C.N., BERGNER J.B., LE GAL R., et al.
2016A&A...594A..28P viz 41           X         1 13263 150 Planck 2015 results. XXVIII. The Planck Catalogue of Galactic cold clumps. PLANCK COLLABORATION, ADE P.A.R., AGHANIM N., et al.
2016ApJ...832....1R 775           X C       18 2 6 Enabling star formation via spontaneous molecular dipole orientation in icy solids. ROSU-FINSEN A., LASNE J., CASSIDY A., et al.
2016ApJ...832..205S 41           X         1 9 2 Discovery of infalling motion with rotation of the cluster-forming clump S235AB and its implication to the clump structures. SHIMOIKURA T., DOBASHI K., MATSUMOTO T., et al.
2016ApJ...833..204F 42           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.
2017A&A...598A..76Z viz 41           X         1 61 13 A multiwavelength observation and investigation of six infrared dark clouds. ZHANG C.-P., YUAN J.-H., LI G.-X., et al.
2017ApJ...839..103D 41           X         1 3 2 AGN outflow shocks on Bonnor-Ebert spheres. DUGAN Z., GAIBLER V., BIERI R., et al.
2017ApJ...840...55B 41           X         1 4 ~ Radiative transfer in a translucent cloud illuminated by an extended background source. BIGANZOLI D., POTENZA M.A.C. and ROBBERTO M.
2017A&A...601A.113S 42           X         1 2 3 On the stability of nonisothermal Bonnor-Ebert spheres. III. The role of chemistry in core stabilization. SIPILA O., CASELLI P. and JUVELA M.
2017A&A...604A..58H 619           X C       14 8 17 Parameterizing the interstellar dust temperature. HOCUK S., SZUCS L., CASELLI P., et al.
2017A&A...605L..10E 724 T   A     X C       16 6 2 The 15 273Å diffuse interstellar band in the dark cloud
Barnard 68.
ELYAJOURI M., COX N.L.J. and LALLEMENT R.
2017A&A...605A..99T viz 82           X         2 15 2 Dust properties of the cometary globule Barnard 207 (LDN 1489). TOGI A., WITT A.N. and JOHN D.S.
2017A&A...606A..82S viz 47           X         1 9 58 The observed chemical structure of L1544. SPEZZANO S., CASELLI P., BIZZOCCHI L., 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.
2018ApJ...852..102S viz 727       D S   X C       16 82 4 Intensity-corrected Herschel observations of nearby isolated low-mass clouds. SADAVOY S.I., KETO E., BOURKE T.L., et al.
2018A&A...610A...9G viz 125           X         3 23 2 The first frost in the Pipe Nebula. GOTO M., BAILEY J.D., HOCUK S., et al.
2018MNRAS.475..121S 42           X         1 20 15 Magnetic tension and instabilities in the Orion A integral-shaped filament. SCHLEICHER D.R.G. and STUTZ A.
2018ApJ...856..147O 42           X         1 28 12 Gravitationally unstable condensations revealed by ALMA in the TUKH122 prestellar core in the Orion A cloud. OHASHI S., SANHUEZA P., SAKAI N., et al.
2018MNRAS.476.4994F 42           X         1 8 6 Tracing the atomic nitrogen abundance in star-forming regions with ammonia deuteration. FURUYA K. and PERSSON M.V.
2018MNRAS.473.2441L 3202     A S   X C F     74 6 2 Lane-Emden equation with inertial force and general polytropic dynamic model for molecular cloud cores. LI D., LOU Y.-Q. and ESIMBEK J.
2018MNRAS.478L.110A 43           X         1 6 7 Primordial mass and density segregation in a young molecular cloud. ALFARO E.J. and ROMAN-ZUNIGA C.G.
2018A&A...615L..16F 84           X         2 9 1 Depletion of 15N in the center of L1544: Early transition from atomic to molecular nitrogen? FURUYA K., WATANABE Y., SAKAI T., et al.
2018MNRAS.478.3467S 42           X         1 24 ~ Probing the 9.7 µm interstellar silicate extinction profile through the Spitzer/IRS spectroscopy of OB stars. SHAO Z., JIANG B.W., LI A., et al.
2018ApJ...864...82D 42           X         1 4 3 Spectral tomography for the line-of-sight structures of the Taurus Molecular Cloud 1. DOBASHI K., SHIMOIKURA T., NAKAMURA F., et al.
2018A&A...617A.100B 127           X   F     2 34 68 Fragmentation and disk formation during high-mass star formation. IRAM NOEMA (Northern Extended Millimeter Array) large program CORE. BEUTHER H., MOTTRAM J.C., AHMADI A., et al.
2018A&A...618A.163J viz 84           X         2 14 ~ Magnetic fields in Bok globules: multi-wavelength polarimetry as tracer across large spatial scales. JORQUERA S. and BERTRANG G.H.-M.
2018AJ....156..248T 43           X         1 10 17 Kinetic tomography. II. A second method for mapping the velocity field of the Milky Way interstellar medium and a comparison with spiral structure models. TCHERNYSHYOV K., PEEK J.E.G. and ZASOWSKI G.
2018A&A...620L...4P 861     A S   X C       19 6 3 Synchrotron emission in molecular cloud cores: the SKA view. PADOVANI M. and GALLI D.
2018A&A...620A..24H viz 209           X         5 10 5 The HP2 Survey. IV. The Pipe nebula: Effective dust temperatures in dense cores. HASENBERGER B., LOMBARDI M., ALVES J., et al.
2018A&A...620A..62G viz 84           X         2 19 2 The Serpens filament at the onset of slightly supercritical collapse. GONG Y., LI G.X., MAO R.Q., et al.
2018PASJ...70S..54S 46           X         1 2 8 The effect of photoionizing feedback on star formation in isolated and colliding clouds. SHIMA K., TASKER E.J., FEDERRATH C., et al.
2019A&A...628A..67E viz 366     A     X C       8 11 ~ Updated extraction of the APOGEE 1.5273 µm diffuse interstellar band: a Planck view on the carrier depletion in dense cores. ELYAJOURI M. and LALLEMENT R.
2020A&A...633A.132H 435         O X C       9 7 ~ AVIATOR: Morphological object reconstruction in 3D. An application to dense cores. HASENBERGER B. and ALVES J.
2020ApJ...890...14K 44           X         1 4 ~ Distortion of magnetic fields in the dense core CB81 (L1774, Pipe 42) in the Pipe Nebula. KANDORI R., TAMURA M., SAITO M., et al.
2020ApJ...891...55K 261           X         6 4 ~ Distortion of magnetic fields in Barnard 335. KANDORI R., SAITO M., TAMURA M., et al.
2020A&A...635A..34K viz 44           X         1 1871 70 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.
2020ApJ...892..128K 44           X         1 10 ~ Distortion of magnetic fields in BHR 71. KANDORI R., TAMURA M., SAITO M., et al.
2020A&A...636A..32B 44           X         1 4 ~ Novel approach to distinguish between vacuum UV-induced ice photodesorption and photoconversion. Investigation of CH4, CH3OH, and CH3CN. BULAK M., PAARDEKOOPER D.M., FEDOSEEV G., et al.
2020ApJ...896..163M 44           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.
2020ApJ...900...20K 44           X         1 11 ~ Distortion of magnetic fields in the dense core SL 42 (CrA-E) in the corona Australis molecular cloud complex. KANDORI R., TAMURA M., SAITO M., et al.
2020A&A...643A..60S viz 931       D S   X C       20 15 14 Distribution of methanol and cyclopropenylidene around starless cores. SPEZZANO S., CASELLI P., PINEDA J.E., et al.
2020PASJ...72....8K 2986 T   A     X C       67 5 ~ Distortion of magnetic fields in
Barnard 68.
KANDORI R., TAMURA M., SAITO M., et al.
2021A&A...648A..24V 91           X         2 64 73 Water in star-forming regions: physics and chemistry from clouds to disks as probed by Herschel spectroscopy. VAN DISHOECK E.F., KRISTENSEN L.E., MOTTRAM J.C., et al.
2021AJ....161..229K 45           X         1 19 ~ High-resolution CARMA observation of molecular gas in the North America and Pelican Nebulae. KONG S., ARCE H.G., CARPENTER J.M., et al.
2021ApJ...917...35M 19       D               2 20 26 Magnetic properties of star-forming dense cores. MYERS P.C. and BASU S.
2021ApJ...918....2C 90           X         2 30 ~ Constraining spatial densities of early ice formation in small dense molecular cores from extinction maps. CHU L.E.U. and HODAPP K.W.
2021MNRAS.507.6061R 45           X         1 6 ~ Turbulence and its connection to episodic accretion in binary YSOs. RIAZ R., SCHLEICHER D.R.G., VANAVERBEKE S., et al.
2021ApJS..256...25T viz 45           X         1 18 5 Molecular cloud cores with high deuterium fractions: Nobeyama mapping survey. TATEMATSU K., KIM G., LIU T., et al.
2021ApJ...921..150K 45           X         1 18 5 Star formation triggered by shocks. KINOSHITA S.W., NAKAMURA F. and WU B.
2021A&A...656A.109R 50           X         1 3 15 The cosmic-ray ionisation rate in the pre-stellar core L1544. REDAELLI E., SIPILA O., PADOVANI M., et al.
2021A&A...656A.148R 63       D     X         2 72 ~ Mechanisms for gas-phase molecular formation of neutral formaldehyde (H2CO) in cold astrophysical regions. RAMAL-OLMEDO J.C., MENOR-SALVAN C.A. and FORTENBERRY R.C.
2022MNRAS.510..725P 47           X         1 14 11 The subthermal excitation of the C I lines in the molecular gas reservoirs of galaxies: its significance and potential utility. PAPADOPOULOS P., DUNNE L. and MADDOX S.
2022MNRAS.510.4420T 47           X         1 9 5 Non-ideal magnetohydrodynamic simulations of subcritical pre-stellar cores with non-equilibrium chemistry. TRITSIS A., FEDERRATH C., WILLACY K., et al.
2022PASJ...74...24K 47           X         1 50 3 Nobeyama 45 m Local Spur CO survey. I. Giant molecular filaments and cluster formation in the Vulpecula OB association. KOHNO M., NISHIMURA A., FUJITA S., et al.
2022A&A...658A.189P 63           X         1 1 16 Cosmic rays in molecular clouds probed by H2 rovibrational lines. Perspectives for the James Webb Space Telescope. PADOVANI M., BIALY S., GALLI D., et al.
2022MNRAS.513.1275A 93           X         2 15 ~ Core formation via filament fragmentation and the impact of ambient pressure on it. ANATHPINDIKA S.V. and DI FRANCESCO J.
2022ApJ...930....2M 47           X         1 103 1 Infrared Spectroscopic Survey of the Quiescent Medium of Nearby Clouds. II. Ice Formation and Grain Growth in Perseus and Serpens. MADDEN M.C.L., BOOGERT A.C.A., CHIAR J.E., et al.
2022MNRAS.517..885O 141           X         3 11 18 Turbulence, coherence, and collapse: Three phases for core evolution. OFFNER S.S.R., TAYLOR J., MARKEY C., et al.
2022A&A...667A.137B viz 47           X         1 22 ~ Ammonia characterisation of dense cores in the Rosette Molecular Cloud. BOGNER R., CSENGERI T., MONTILLAUD J., et al.
2023A&A...669L...6L 900     A D     X   F     18 18 2 First detection of CHD2OH towards pre-stellar cores. LIN Y., SPEZZANO S. and CASELLI P.
2023MNRAS.519.5017N 50           X         1 5 ~ Environmental effects of star-forming cores on mass accretion rate. NOZAKI S. and MACHIDA M.N.
2023ApJ...945..156S 100           X         2 13 ~ ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP): Density Structure of Centrally Concentrated Prestellar Cores from Multiscale Observations. SAHU D., LIU S.-Y., JOHNSTONE D., et al.
2023MNRAS.519.2578D 50           X         1 11 ~ The impact of the initial core temperature on protostellar disc fragmentation. DI SIGALOTTI L.G., CRUZ F., HARETER M., et al.
2023ApJ...952...83Z 700       S   X C       12 6 ~ Reconstructing the Volume Density Profile of Prestellar Cores with the Anisotropic Inverse Abel Transform Method. ZHANG Y., LIU Z., AN W., et al.
2023A&A...675A..34J 100           X         2 4 ~ 3D physico-chemical model of a pre-stellar core I. Environmental and structural impact on the distribution of CH3OH and c-C3H2. JENSEN S.S., SPEZZANO S., CASELLI P., et al.

goto View the references in ADSLimited to 100


2023.09.29-18:38:59

© Université de Strasbourg/CNRS

    • Contact