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相关论文: Gas infall in the massive star formation core G192…

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Gas accretion is a key process in star formation. However, the gas infall detections in high-mass star forming regions with high-spatial resolution observations are rare. Here we report the detection of gas infall towards a cometary…

太阳与恒星天体物理 · 物理学 2013-10-11 Tie Liu , Yuefang Wu , Huawei Zhang

We present the results of a high resolution study with the Submillimeter Array towards the massive star forming complex G9.62+0.19. Three sub-mm cores are detected in this region. The masses are 13, 30 and 165 M$_{\sun}$ for the northern,…

太阳与恒星天体物理 · 物理学 2015-05-27 Tie Liu , Yuefang Wu , Sheng-Yuan Liu , Sheng-Li Qin , Yu-Nung Su , Huei-Ru Chen , Zhiyuan Ren

Recent high-angular-resolution observations indicate the need for core growth to form high-mass stars. To understand the gas dynamics at the core scale in the very early evolutionary stages before being severely affected by feedback, we…

Gas infall motions play a crucial role in high-mass star formation and are characterized by observable signatures in the form of blue-shifted asymmetric spectral line profiles ("blue profiles"). However, the connection between blue profiles…

星系天体物理 · 物理学 2023-09-27 Fengwei Xu , Ke Wang , Yuxin He , Jingwen Wu , Lei Zhu , Diego Mardones

We present molecular line imaging observations of three massive molecular outflow sources, G333.6-0.2, G333.1-0.4, and G332.8-0.5, all of which also show evidence for infall, within the G333 giant molecular cloud (GMC). All three are within…

星系天体物理 · 物理学 2015-09-14 N. Lo , B. Wiles , M. P. Redman , M. R. Cunningham , I. Bains , P. A. Jones , M. G. Burton , L. Bronfman

We present a multi-wavelength observational study towards the high-mass young stellar object G8.68-0.37. A single massive gas-and-dust core is observed in the (sub)millimeter continuum and molecular line emissions. We fitted the spectral…

太阳与恒星天体物理 · 物理学 2015-06-04 Zhiyuan Ren , Yuefang Wu , Ming Zhu , Tie Liu , Ruisheng Peng , Shengli , Qin , Lixin Li

We present a gas kinematic study of the massive protocluster G318.049+00.086. The protocluster is reported to contain 12 prestellar core candidates and 4 protostellar cores. Filamentary structures are identified using the 1.3 mm dust…

The research of infall motion is a common means to study molecular cloud dynamics and the early process of star formation. Many works had been done in-depth research on infall. We searched the literature related to infall study of molecular…

星系天体物理 · 物理学 2022-09-14 Shuling Yu , Zhibo Jiang , Yang Yang , Zhiwei Chen , Haoran Feng

Three bright molecular line sources in G333 have recently been shown to exhibit signatures of infall. We describe a molecular line radiative transfer modelling process which is required to extract the infall signature from Mopra and Nanten2…

星系天体物理 · 物理学 2016-04-20 B. Wiles , N. Lo , M. P. Redman , M. R. Cunningham , P. A. Jones , M. G. Burton , L. Bronfman

How high-mass stars form remains unclear currently. Calculation suggests that the radiation pressure of a forming star can halt spherical infall, preventing its further growth when it reaches 10 M$_{\odot}$. Two major theoretical models on…

太阳与恒星天体物理 · 物理学 2014-11-04 Yuefang Wu , Tie Liu , Shengli Qin

Aims: The main goal of this study is to perform a sub-arcsecond resolution analysis of the high-mass star formation region G19.61-0.23, both in the continuum and molecular line emission. While the centimeter continuum images will be…

太阳与恒星天体物理 · 物理学 2015-05-19 R. S. Furuya , R. Cesaroni , H. Shinnaga

Context. This study is part of a large project to study the physics of accretion and molecular outflows towards a selected sample of high-mass star-forming regions that show evidence of infall and rotation from previous studies. Aims. We…

星系天体物理 · 物理学 2015-05-28 M. T. Beltran , R. Cesaroni , Q. Zhang , R. Galvan-Madrid , H. Beuther , C. Fallscheer , R. Neri , C. Codella

How mass is accumulated from cloud-scale down to individual stars is a key open question in understanding high-mass star formation. Here, we present the mass accumulation process in a hub-filament cloud G22 which is composed of four…

Thirty massive clumps associated with bright infrared sources were observed to detect the infall signatures and characterize infall properties in the envelope of the massive clumps by APEX telescope in CO(4-3) and C$^{17}$O(3-2) lines.…

星系天体物理 · 物理学 2021-02-10 Ying-Hua Yue , Sheng-Li Qin , Tie Liu , Meng-Yao Tang , Yuefang Wu , Ke Wang , Chao Zhang

Observational evidence for inflowing motions in massive star forming regions has been extremely rare. We have made a spectroscopic survey of a sample of 28 massive star forming cores associated with water masers. An optically thick line of…

天体物理学 · 物理学 2009-11-10 Jingwen Wu , Neal J. Evans

Previous observations of B335 have presented evidence of ongoing infall in various molecular lines, e.g., HCO$^+$, HCN, CO. There have been no confirmed observations of a rotationally supported disk on scales greater than ~12~au. The…

Context. To better understand the formation of high-mass stars, it is fundamental to investigate how matter accretes onto young massive stars, how it is ejected, and how all this differs from the low-mass case. The massive protocluster…

We present CS(3-2) and DCO+(2-1) observations of 94 starless cores and compare the results with previous CS(2-1) and N2H+(1-0) observations to study inward motions in starless cores. The velocity shifts of the CS(3-2) and (2-1) lines with…

天体物理学 · 物理学 2009-11-10 Chang Won Lee , Philip C. Myers , Rene Plume

We present maps of seven sources selected from Klaassen & Wilson (2007a) in SiO (J=8-7) and HCO$^+$ and H$^{13}$CO$^+$ (J=4-3) which were obtained using HARP-B on the James Clerk Maxwell Telescope. We find that four out of our seven sources…

天体物理学 · 物理学 2009-11-13 P. D Klaassen , C. D Wilson

We investigate star formation at very early evolutionary phases in five massive clouds in the inner 500 pc of the Galaxy, the Central Molecular Zone. Using interferometer observations of H$_2$O masers and ultra-compact H II regions, we find…

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