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相关论文: H2CS deuteration maps towards the pre-stellar core…

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High-mass stars are expected to form from dense prestellar cores. Their precise formation conditions are widely discussed, including their virial condition, which results in slow collapse for super-virial cores with strong support by…

星系天体物理 · 物理学 2017-06-21 Bastian Körtgen , Stefano Bovino , Dominik R. G. Schleicher , Andrea Giannetti , Robi Banerjee

Recent observations indicate that organic molecules are prevalent towards starless and prestellar cores. Deuteration of these molecules has not been well-studied during the starless phase. Published observations of singly-deuterated…

星系天体物理 · 物理学 2020-12-02 Hannah E. Ambrose , Yancy L. Shirley , Samantha Scibelli

We investigate the molecular evolution and D/H abundance ratios that develop as star formation proceeds from a dense-cloud core to a protostellar core, by solving a gas-grain reaction network applied to a 1-D radiative hydrodynamic model…

星系天体物理 · 物理学 2015-06-11 Yuri Aikawa , Valentine Wakelam , Franck Hersant , Robin T. Garrod , Eric Herbst

Finding tracers of the innermost regions of prestellar cores is important for understanding their chemical and dynamical evolution before the onset of gravitational collapse. While classical molecular tracers, such as CO and CS, have been…

天体物理学 · 物理学 2016-08-15 Maryvonne Gerin , Dariuscz C. Lis , Sabine Philipp , Rolf Güsten , Evelyne Roueff , Vincent Reveret

Deuterium fractionation in molecular ions, in particular HCO+, has been extensively used to estimate the degree of ionization in molecular clouds. This paper reviews recent work on ionization degree in homogeneous clouds. We will show that…

天体物理学 · 物理学 2009-11-07 Paola Caselli

We present observations of HDCO and H2CO emission toward a sample of 15 Class 0 protostars in the Orion A and B clouds. Of these, eleven protostars are Herschel-identified PACS Bright Red Sources (PBRS) and four are previously identified…

星系天体物理 · 物理学 2015-10-14 Miju Kang , Minho Choi , Amelia M. Stutz , Ken'ichi Tatematsu

Water is a very abundant molecule in star-forming regions. Its deuterium fractionation is an important tool for understanding its formation and evolution during the star and planet formation processes. While the HDO/H$_2$O ratio has been…

We are carrying out a physical and chemical study of the protostellar envelopes in a representative sample of IM Class 0 protostars. In our first paper (Crimier et al. 2010), we determined the physical structure (density-temperature radial…

The study of deuterium fractionation is a valuable tool for reconstructing our chemical history from the early prestellar stages to the formation of planets. In the context of the ALMA Large Programme FAUST, we observed formaldehyde,…

We present maps of the 6 cm and 1.3 mm transitions of formaldehyde toward three cold, dense pre-protostellar cores: L1498, L1512, and L1544. The 6 cm transition is a unique probe of high density gas at low temperature. However, our models…

天体物理学 · 物理学 2009-11-10 Kaisa E. Young , Jeong-Eun Lee , Neal J. Evans , Paul F. Goldsmith , Steven D. Doty

The physical and chemical properties of cold and dense molecular clouds are key to understanding how stars form. Using the IRAM 30 m and NRO 45 m telescopes, we carried out a Multiwavelength line-Imaging survey of the 70 $\mu$m dark and…

Prestellar cores represent early sites of low-mass ($M$ $\leq$ few M$_\odot$) star and planet formation and provide insight into initial chemical conditions of complex organic molecules (COMs). Deuterated COMs trace the degree of molecular…

The H3+ ion plays a key role in the chemistry of dense interstellar gas clouds where stars and planets are forming. The low temperatures and high extinctions of such clouds make direct observations of H3+ impossible, but lead to large…

星系天体物理 · 物理学 2015-06-04 Floris van der Tak

Chemical models predict that the deuterated fraction (the column density ratio between a molecule containing D and its counterpart containing H) of N2H+, Dfrac(N2H+), is high in massive pre-protostellar cores and rapidly drops of an order…

星系天体物理 · 物理学 2015-06-18 F. Fontani , T. Sakai , K. Furuya , N. Sakai , Y. Aikawa , S. Yamamoto

The deuterium fraction [N$_2$D$^+$]/[N$_2$H$^+$], may provide information about the ages of dense, cold gas structures, important to compare with dynamical models of cloud core formation and evolution. Here we introduce a complete chemical…

太阳与恒星天体物理 · 物理学 2015-06-29 Shuo Kong , Paola Caselli , Jonathan C. Tan , Valentine Wakelam , Olli Sipilä

Although deuterium enrichment of water may provide an essential piece of information in the understanding of the formation of comets and protoplanetary systems, only a few studies up to now have aimed at deriving the HDO/H2O ratio in…

星系天体物理 · 物理学 2015-03-17 F. -C. Liu , B. Parise , L. Kristensen , R. Visser , E. F. van Dishoeck , R. Güsten

Aims. We measure the deuterium fraction, RD, and the CO-depletion factor, fd, toward a number of starless and protostellar cores in the L1688 region of the Ophiuchus molecular cloud complex and search for variations based upon environmental…

太阳与恒星天体物理 · 物理学 2016-03-02 A. Punanova , P. Caselli , A. Pon , A. Belloche , Ph. André

We present N2D+ 3-2 (IRAM) and H2D+ 1_11 - 1_10 and N2H+ 4-3 (JCMT) maps of the small cluster-forming Ophiuchus B2 core in the nearby Ophiuchus molecular cloud. In conjunction with previously published N2H+ 1-0 observations, the N2D+ data…

星系天体物理 · 物理学 2015-05-19 R. K. Friesen , J. Di Francesco , P. C. Myers , A. Belloche , Y. L. Shirley , T. L. Bourke , P. André

Much of the dense gas in molecular clouds has a filamentary structure but the detailed structure and evolution of this gas is poorly known. We have observed 54 cores in infrared dark clouds (IRDCs) using N$_2$H$^+$ (1-0) and (3-2) to…

太阳与恒星天体物理 · 物理学 2015-12-02 Matias Lackington , Gary A. Fuller , Jaime E. Pineda , Guido Garay , Nicolas Peretto , Alessio Traficante

High deuterium fractionation is observed in various types of environment such as prestellar cores, hot cores and hot corinos. It has proven to be an efficient probe to study the physical and chemical conditions of these environments. The…