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  • 标题:Using CO line ratios to trace compressed areas in bubble N131 ★
  • 本地全文:下载
  • 作者:Chenlin Zhou ; Lixia Yuan ; Ming Zhu
  • 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:631
  • 页码:1-6
  • DOI:10.1051/0004-6361/201936063
  • 语种:English
  • 出版社:EDP Sciences
  • 摘要:Aims.N131 is a typical infrared dust bubble showing an expanding ring-like shell. We study the CO line ratios that can be used to trace the interaction in the expanding bubble.Methods.We carried out new CO (3–2) observations toward bubble N131 using the 15 m JCMT, and derived line ratios by combining these observations with our previous CO (2–1) and CO (1–0) data from IRAM 30 m observations. To trace the interaction between the molecular gas and the ionized gas in the HII region, we usedRADEXto model the dependence of the CO line ratios on kinetic temperature and H2volume density, and examined the abnormal line ratios based on other simulations.Results.We present CO (3–2), CO (2–1), and CO (1–0) integrated intensity maps convolved to the same angular resolution (22.5″). The three different CO transition maps show a similar morphology. The line ratios ofWCO (3–2)/WCO (2–1)mostly range from 0.2 to 1.2 with a median of 0.54 ± 0.12, while the line ratios ofWCO (2–1)/WCO (1–0)range from 0.5 to 1.6 with a median of 0.84 ± 0.15. The high CO line ratiosWCO (3–2)/WCO (2–1)≳ 0.8 andWCO (2–1)/WCO (1–0)≳ 1.2 are beyond the threshold predicted by numerical simulations based on the assumed density-temperature structure for the inner rims of the ring-like shell, where the compressed areas are located in bubble N131.Conclusions.These high CO integrated intensity ratios, such asWCO (3–2)/WCO (2–1)≳ 0.8 andWCO (2–1)/WCO (1–0)≳ 1.2, can be used as a tracer of gas-compressed regions with a relatively high temperature and density. This further suggests that the non-Gaussian part of the line-ratio distribution can be used to trace the interaction between the molecular gas and the hot gas in the bubble.
  • 关键词:Key wordsenISM: bubblesinfrared: ISMstars: formationmolecular dataISM: individual objects: N131
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