A 3 mm molecular line survey toward the C-star envelope CIT 6

Author:

Yang Kuilu1,Zhang Yong123ORCID,Qiu Jianjie134,Ao Yina1,Li Xiaohu25

Affiliation:

1. School of Physics and Astronomy, Sun Yat-sen University , 2 Da Xue Road, Tangjia, Zhuhai 519000, Guangdong Province , China

2. Xinjiang Astronomical Observatory, Chinese Academy of Sciences , 150 Science 1 Street, Urumqi, Xinjiang 830011 , PR China

3. CSST Science Center for the Guangdong–Hongkong–Macau Greater Bay Area , Sun Yat-Sen University, Zhuhai 519000 , PR China

4. Key Laboratory of Modern Astronomy and Astrophysics (Nanjing University) , Ministry of Education, Nanjing 210023 , PR China

5. Key Laboratory of Radio Astronomy, Chinese Academy of Sciences , Urumqi, Xinjiang 830011 , PR China

Abstract

Abstract We present an unbiased molecular line survey toward the carbon-rich circumstellar envelope CIT 6 carried out between 90 and 116 GHz with the Arizona Radio Observatory 12 m telescope. A total of 42 lines assigned to 10 molecular species and four isotopologues are detected. Despite the absence of any newly identified circumstellar molecules, several transitions are freshly reported for this object. This work is a complement to our previous line survey toward CIT 6 in the frequency ranges of 36–49 GHz and 131–268 GHz. Based on the measurements and in combination with previously published data, we perform a rotation-diagram analysis to determine the column densities, excitation temperatures, and fractional abundances of the molecules. The excitation temperature varies along the radius. The abundance pattern of CIT 6 is broadly consistent with that of the prototype C-star IRC +10216 at the specified detection sensitivity, indicating that the molecular richness in IRC +10216 cannot be attributed to an interpretation of unusual chemistry. Nevertheless, subtle distinctions between the two C-stars are found. The higher abundance of carbon-chain molecules and lower 12C$/$13C ratio in CIT 6 compared to IRC +10216 imply that the former is more massive or in a more evolved phase than the latter.

Funder

National Natural Science Foundation of China

Guangdong Basic and Applied Basic Research Foundation

Fundamental Research Funds for the Central Universities

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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