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  • 标题:Gas phase Elemental abundances in Molecular cloudS (GEMS)
  • 其他标题:I. The prototypical dark cloud TMC 1
  • 本地全文:下载
  • 作者:A. Fuente ; D. G. Navarro ; P. Caselli
  • 期刊名称:Astronomy & Astrophysics
  • 印刷版ISSN:0004-6361
  • 电子版ISSN:1432-0746
  • 出版年度:2019
  • 卷号:624
  • DOI:10.1051/0004-6361/201834654
  • 语种:English
  • 出版社:EDP Sciences
  • 摘要:GEMS is an IRAM 30 m Large Program whose aim is determining the elemental depletions and the ionization fraction in a set of prototypical star-forming regions. This paper presents the first results from the prototypical dark cloud Taurus molecular cloud (TMC) 1. Extensive millimeter observations have been carried out with the IRAM 30 m telescope (3 and 2 mm) and the 40 m Yebes telescope (1.3 cm and 7 mm) to determine the fractional abundances of CO, HCO+, HCN, CS, SO, HCS+, and N2H+in three cuts which intersect the dense filament at the well-known positions TMC 1-CP, TMC 1-NH3, and TMC 1-C, covering a visual extinction range fromAV~ 3 to ~20 mag. Two phases with differentiated chemistry can be distinguished: (i) the translucent envelope with molecular hydrogen densities of 1−5 × 103cm−3; and (ii) the dense phase, located atAV> 10 mag, with molecular hydrogen densities >104cm−3. Observations and modeling show that the gas phase abundances of C and O progressively decrease along the C+/C/CO transition zone (AV~ 3 mag) where C/H ~ 8 × 10−5and C/O ~ 0.8−1, until the beginning of the dense phase atAV~ 10 mag. This is consistent with the grain temperatures being below the CO evaporation temperature in this region. In the case of sulfur, a strong depletion should occur before the translucent phase where we estimate anS∕H~ (0.4−2.2) × 10−6, an abundance ~7–40 times lower than the solar value. A second strong depletion must be present during the formation of the thick icy mantles to achieve the values of S/H measured in the dense cold cores (S∕H~ 8 × 10−8). Based on our chemical modeling, we constrain the value ofζH2to ~(0.5–1.8) × 10−16s−1in the translucent cloud.
  • 关键词:Key wordsenastrochemistryISM: abundancesISM: kinematics and dynamicsISM: moleculesstars: formationstars: low-mass
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