[RJS2006] MSXDC G028.37+00.07 MM14 , the SIMBAD biblio

[RJS2006] MSXDC G028.37+00.07 MM14 , the SIMBAD biblio (18 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.06.06CEST01:43:57


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Title First 3 Authors
2006ApJ...641..389R viz 15       D               231 401 Infrared dark clouds: precursors to star clusters. RATHBORNE J.M., JACKSON J.M. and SIMON R.
2009ApJS..181..360C 224 183 Star formation activity of cores within infrared dark clouds. CHAMBERS E.T., JACKSON J.M., RATHBORNE J.M., et al.
2009ApJ...696..484B 91       D         F     1 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.
2010ApJ...715..310R viz 15       D               1 194 84 The early stages of star formation in infrared dark clouds: characterizing the core dust properties. RATHBORNE J.M., JACKSON J.M., CHAMBERS E.T., et al.
2010ApJ...721..222B 15       D               1 54 65 An infrared through radio study of the properties and evolution of IRDC clumps. BATTERSBY C., BALLY J., JACKSON J.M., et al.
2012ApJ...754....5B 16       D               1 53 139 Mid-infrared extinction mapping of infrared dark clouds. II. The structure of massive starless cores and clumps. BUTLER M.J. and TAN J.C.
2014ApJ...782L..30B 94       D       C       2 18 26 The darkest shadows: deep mid-infrared extinction mapping of a massive protocluster. BUTLER M.J., TAN J.C. and KAINULAINEN J.
2015ApJ...804..141Z 120           X         3 52 136 Fragmentation of molecular clumps and formation of a protocluster. ZHANG Q., WANG K., LU X., et al.
2017ApJ...834..193K 16       D               1 94 23 A hunt for massive starless cores. KONG S., TAN J.C., CASELLI P., et al.
2018ApJ...855L..25K 82           X         2 23 5 Core emergence in a massive infrared dark cloud: a comparison between Mid-IR extinction and 1.3 mm emission. KONG S., TAN J.C., ARCE H.G., et al.
2018MNRAS.474.3760C 123           X         3 24 5 Widespread SiO and CH3OH emission in filamentary infrared dark clouds. COSENTINO G., JIMENEZ-SERRA I., HENSHAW J.D., et al.
2018ApJ...862..105L viz 41           X         1 147 15 The core mass function across galactic environments. II. Infrared dark cloud clumps. LIU M., TAN J.C., CHENG Y., et al.
2019ApJ...873...31K 84           X         2 21 2 The core mass function in the infrared dark cloud G28.37+0.07. KONG S.
2020MNRAS.491..427B 43           X         1 24 ~ Sulphur-bearing and complex organic molecules in an infrared cold core. BEAKLINI P.P.B., MENDOZA E., CANELO C.M., et al.
2021MNRAS.504..338P 104       D         F     3 134 17 A Galactic survey of radio jets from massive protostars. PURSER S.J.D., LUMSDEN S.L., HOARE M.G., et al.
2021ApJ...921...96L 453       D     X         11 51 6 SiO outflows as tracers of massive star formation in infrared dark clouds. LIU M., TAN J.C., MARVIL J., et al.
2022A&A...662A..39E 108       D     X         3 12 3 Astrochemical modelling of infrared dark clouds. ENTEKHABI N., TAN J.C., COSENTINO G., et al.
2024ApJ...966..120L 300           X         6 16 ~ Dark Dragon Breaks Magnetic Chain: Dynamical Substructures of IRDC G28.34 Form in Supported Environments. LIU J., ZHANG Q., LIN Y., et al.

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