The Chemical Clock of High-mass Star-forming Regions: N2H+/CCS

被引:0
作者
Chen, J. L. [1 ]
Zhang, J. S. [1 ]
Ge, J. X. [2 ,3 ]
Wang, Y. X. [1 ]
Yu, H. Z. [4 ]
Zou, Y. P. [1 ]
Yan, Y. T. [5 ]
Wang, X. Y. [1 ]
Wei, D. Y. [1 ]
机构
[1] Guangzhou Univ, Ctr Astrophys, Guangzhou 510006, Peoples R China
[2] Chinese Acad Sci, Xinjiang Astron Observ, Urumqi 830011, Peoples R China
[3] Xinjiang Key Lab Radio Astrophys, 150 Sci 1 St, Urumqi 830011, Peoples R China
[4] Ural Fed Univ, 19 Mira St, Ekaterinburg 620002, Russia
[5] Max Planck Inst Radioastron, Auf dem Hugel 69, D-53121 Heidelberg, Germany
基金
中国国家自然科学基金;
关键词
COMPACT HII-REGIONS; H-II REGIONS; COMPLEX ORGANIC-MOLECULES; DENSE INTERSTELLAR CLOUDS; NITROGEN ISOTOPE RATIOS; INFRARED DARK CLOUDS; GALACTIC PLANE; TRIGONOMETRIC PARALLAXES; PROTOSTELLAR CANDIDATES; PHYSICAL-PROPERTIES;
D O I
10.3847/1538-3881/addf35
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Using the Institut de Radioastronomie Millm & eacute;trique 30 m telescope, we presented observations of N2H+ J = 1-0, CCS JN = 87-76 and 77-66 lines toward a large sample of ultracompact H II regions (UC H IIs). Among our 88 UC H IIs, 87 and 33 sources were detected in the N2H+ J = 1-0 and CCS JN = 87-76 lines, respectively. For the CCS 77-66 transition, we detected emission in 10 out of 82 targeted sources, all of which also exhibited emission in the CCS JN = 87-76 line. Physical parameters are derived for our detections, including the optical depth and excitation temperature of N2H+, the rotational temperature of CCS and the column density. Combining our results and previous observation results in different stages of high-mass star-forming regions (HMSFRs), we found that the column density ratio N(N2H+)/N(CCS) increases from high-mass starless cores through high-mass protostellar cores to UC H IIs. This implies that N(N2H+)/N(CCS) can trace the evolution process of HMSFRs. It was supported by our gas-grain chemical model, which shows that N(N2H+)/N(CCS) increases with the evolution age of HMSFRs. The temperature, density and chemical age were also constrained from our best-fit model at each stage. Thus, we propose N(N2H+)/N(CCS) as a reliable chemical clock of HMSFRs.
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页数:17
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