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相关论文: Star formation in IRDC G31.97+0.07

200 篇论文

Infrared Dark Clouds (IRDCs), condensed regions of the ISM with high column densities, low temperatures and high masses, are suspected sites of star formation. Thousands of IRDCs have already been identified. To date, it has not been…

天体物理学 · 物理学 2008-11-18 Matthijs H. D. van der Wiel , Russell F. Shipman

Massive stars play an important role in the Universe. Unlike low-mass stars, the formation of these objects located at great distances is still unclear. It is expected to be governed by some combination of self-gravity, turbulence, and…

星系天体物理 · 物理学 2024-08-07 A. G. Pazukhin , I. I. Zinchenko , E. A. Trofimova

Aims: We resolve the length-scales for filament formation and fragmentation (res. <=0.1pc), in particular the Jeans length and cylinder fragmentation scale. Methods: We observed the prototypical high-mass star-forming filament IRDC18223…

星系天体物理 · 物理学 2015-11-25 H. Beuther , S. E. Ragan , K. Johnston , Th. Henning , A. Hacar , J. T. Kainulainen

We used the CSO 10.4 meter telescope to image the 350 micron and 450 micron continuum and CO J=6-5 line emission of the IRAS 20126+4104 clump. The continuum and line observations show that the clump is isolated over a 4 pc region and has a…

天体物理学 · 物理学 2009-11-13 Hiroko Shinnaga , Thomas G. Phillips , Ray S. Furuya , Riccardo Cesaroni

The high mass star forming clump W43-MM1 has been mapped in N$_{2}$H$^{+}(4 \rightarrow 3)$, C$^{18}$O$(3 \rightarrow 2)$, SiO$(8 \rightarrow 7)$, and in a single pointing in DCO$^{+}(5 \rightarrow 4)$ towards the center of the clump.…

星系天体物理 · 物理学 2015-05-30 Paulo C. Cortes

With the aim of investigating the presence of molecular and dust clumps linked to two star forming regions identified in the expanding molecular envelope of the stellar wind bubble RCW78, we analyzed the distribution of the molecular gas…

星系天体物理 · 物理学 2015-06-17 C. E. Cappa , M. Rubio , G. A. Romero , N. U. Duronea , V. Firpo

The aim of this study is to better understand the physical and chemical properties of the filamentary IRDC G304.74+01.32. In particular, we aim to investigate the kinematics and dynamical state of the cloud and clumps within it, and the…

星系天体物理 · 物理学 2015-06-04 Oskari Miettinen

Using the ISOPHOT Serendipity Survey (ISOSS) at 170um a sample of galactic star-forming regions exhibiting very cold dust temperatures (< 20 K) and high masses (> 100 M_sun) has been established. We characterise the star-forming content of…

天体物理学 · 物理学 2010-05-19 M. Hennemann , S. M. Birkmann , O. Krause , D. Lemke

To characterize the initial conditions for intermediate- to high-mass star formation, we observed two Infrared Dark Clouds (IRDCs) that remain absorption features up to 70mum wavelength, with the PdBI in the 3.23mm dust continuum as well as…

太阳与恒星天体物理 · 物理学 2015-05-13 Henrik Beuther , Thomas Henning

Infrared Dark Clouds appear to be the long sought population of cold and dense aggregations with the potential of harbouring the earliest stages of massive star formation. Up to now there has been no systematic study on the temperature…

天体物理学 · 物理学 2009-11-11 Thushara Pillai , Friedrich Wyrowski , Sean J. Carey , Karl M. Menten

We are presenting here a study of the cold dust in the infrared ring nebula Gum 31. We aim at deriving the physical properties of the molecular gas and dust associated with the nebula, and investigating its correlation with the star…

星系天体物理 · 物理学 2015-09-30 N. U. Duronea , J. Vasquez , L. Gómez , C. E. Cappa , V. Firpo , C. H. López-Carballo , M. Rubio

Star formation in molecular clouds is intimately linked to their internal mass distribution. We present an unprecedentedly detailed analysis of the column density structure of a high-mass, filamentary molecular cloud, namely IRDC…

星系天体物理 · 物理学 2015-06-16 J. Kainulainen , S. E. Ragan , T. Henning , A. Stutz

The dense, cold regions where high-mass stars form are poorly characterised, yet they represent an ideal opportunity to learn more about the initial conditions of high-mass star formation (HMSF), since high-mass starless cores (HMSCs) lack…

星系天体物理 · 物理学 2016-08-02 S. Feng , H. Beuther , Q. Zhang , Th. Henning , H. Linz , S. Ragan , R. Smith

Massive stars play an important role in the Universe. Unlike low-mass stars, the formation of these objects located at great distances is still unclear. It is expected to be governed by some combination of self-gravity, turbulence, and…

星系天体物理 · 物理学 2024-12-30 A. G. Pazukhin , I. I. Zinchenko , E. A. Trofimova

We report molecular line and dust continuum observations toward the high-mass star forming region G331.5-0.1, one of the most luminous regions of massive star-formation in the Milky Way, located at the tangent region of the Norma spiral…

星系天体物理 · 物理学 2015-06-16 Manuel Merello , Leonardo Bronfman , Guido Garay , Lars-Ake Nyman , Neal J. Evans , C. Malcolm Walmsley

We study the probability distribution function (PDF) of mass surface densities, $\Sigma$, of infrared dark cloud (IRDC) G028.37+00.07 and its surrounding giant molecular cloud. This PDF constrains the physical processes, such as turbulence,…

星系天体物理 · 物理学 2016-09-23 Wanggi Lim , Jonathan C. Tan , Jouni Kainulainen , Bo Ma , Michael J. Butler

Infrared dark clouds (IRDCs) are cold and dense reservoirs of gas potentially available to form stars. Many of these clouds are likely to be pristine structures representing the initial conditions for star formation. The study presented…

We have mapped the dust continuum emission from the molecular cloud covering a region of 28pcx94pc associated with the well-known HII region RCW 106 at 1.2 mm using SIMBA on SEST. The observations, having an HPBW of 24" (0.4 pc), reveal 95…

天体物理学 · 物理学 2009-11-10 B. Mookerjea , C. Kramer , M. Nielbock , L. -A. Nyman

Ever since their discovery, Infrared dark clouds (IRDCs) are generally considered to be the sites just at the onset of high-mass (HM) star formation. In recent years, it has been realized that not all IRDCs harbour HM Young Stellar Objects…

星系天体物理 · 物理学 2020-07-08 R. Retes-Romero , Y. D. Mayya , A. Luna , L. Carrasco

We present observations of ammonia emission lines toward the interstellar filament WB~673 hosting the dense clumps WB~673, WB~668, S233-IR and G173.57+2.43. LTE analysis of the lines allows us to estimate gas kinetic temperature ($\lesssim$…

星系天体物理 · 物理学 2022-11-09 O. L. Ryabukhina , M. S. Kirsanova , C. Henkel , D. S. Wiebe