[RJS2006] MSXDC G034.43+00.24 MM5 , the SIMBAD biblio

[RJS2006] MSXDC G034.43+00.24 MM5 , the SIMBAD biblio (17 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.18CEST20:54:17


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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.
2008ApJ...678.1049S 15       D               1 65 68 A molecular line observation toward massive clumps associated with infrared dark clouds. SAKAI T., SAKAI N., KAMEGAI K., et al.
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.
2011ApJ...743..196C 15       D               1 22 18 Deuterium fractionation as an evolutionary probe in massive Protostellar/Cluster cores. CHEN H.-R., LIU S.-Y., SU Y.-N., et al.
2012ApJ...756...60S viz 15       D               1 198 159 Chemistry in infrared dark cloud clumps: a molecular line survey at 3 mm. SANHUEZA P., JACKSON J.M., FOSTER J.B., et al.
2015ApJ...803...70S                   Z 1 13 6 ALMA observations of the IRDC clump G34.43+00.24 MM3: DNC/HNC ratio. SAKAI T., SAKAI N., FURUYA K., et al.
2015A&A...576A.131H 16       D               1 77 2 Combination of CN(1-0), HCN(1-0), and HNC(1-0): A possible indicator for a high-mass star formation sequence in the Milky Way. HAN X.H., ZHOU J.J., WANG J.Z., et al.
2016ApJ...819..117X 80           X         2 26 21 Gas kinematics and star formation in the filamentary IRDC G34.43+0.24. XU J.-L., LI D., ZHANG C.-P., et al.
2017A&A...598A..76Z viz 16       D               2 61 13 A multiwavelength observation and investigation of six infrared dark clouds. ZHANG C.-P., YUAN J.-H., LI G.-X., et al.
2018MNRAS.475.5268B 82               F     1 16 5 Similar complex kinematics within two massive, filamentary infrared dark clouds. BARNES A.T., HENSHAW J.D., CASELLI P., et al.
2019ApJ...878...10T 88               F     1 10 46 Gravity, magnetic field, and turbulence: relative importance and impact on fragmentation in the infrared dark cloud G34.43+00.24. TANG Y.-W., KOCH P.M., PERETTO N., et al.
2019ApJ...883...95S 126           X   F     2 23 38 Magnetic fields in the infrared dark cloud G34.43+0.24. SOAM A., LIU T., ANDERSSON B.-G., et al.
2020ApJ...901...31L 299     A D     X         8 11 13 Chemistry of protostellar clumps in the high-mass, star-forming filamentary infrared dark cloud G034.43+00.24. LIU H.-L., SANHUEZA P., LIU T., et al.
2023A&A...679A.123K viz 47           X         1 37 ~ A survey of SiO J = 1-0 emission toward massive star-forming regions. KIM W.-J., URQUHART J.S., VEENA V.S., et al.
2024ApJ...960...76P 1030     A     X C       20 10 ~ Multiscale Dynamical Scenario of High-mass Star Formation in an IRDC Filament G34. PAN S., LIU H.-L. and QIN S.-L.

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