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Probing star formation and feedback using CCOSMA and archival data in the CFG028.68–0.28 quasi-sinusoidal filament
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作者 Jin-long Xu Jirgen Stutzki +19 位作者 Yuefang Wu Xin Guan Jun-Jie Wang M.Miller Yang Chen Sheng-li Qin Jun-Zhi Wang Chang-Chun Ning Danzengluobu Tian-lu Chen Nai-Ping Yu Chuan-Peng Zhang Xiao-lan liu jian-bin l Karl Jacobs Urs UGraf Gang Xu Nan li Guo-Yin Zhang and Qi Wu 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2019年第12期305-317,共13页
We have performed a multi-wavelength study toward a quasi-sinusoidal filament(CFG028.68–0.28). A new large-scale ^12CO J = 3-2 map was obtained from the China-Cologne Observation for Sub Millimeter Astronomy(CCOSMA) ... We have performed a multi-wavelength study toward a quasi-sinusoidal filament(CFG028.68–0.28). A new large-scale ^12CO J = 3-2 map was obtained from the China-Cologne Observation for Sub Millimeter Astronomy(CCOSMA) 3m radio telescope. Based on the ATLASGAL catalog, we have identified 27 dust clumps in the filament. Through the relationship between the mass and radius of these clumps, 67% of these clumps are dense and massive enough to potentially form massive stars. The obtained CFE is ~11% in the filament. The filament has a linear mass density of ~305 M⊙pc^-1, which is smaller than its critical mass to length ratio. This suggests that the external pressure from the neighboring H Ⅱ regions may help prevent the filament from dispersing under the effects of turbulence. Comparing the energy injection from outflows and H Ⅱ regions in the filament, the ionization feedback from the H Ⅱ regions can help maintain the observed turbulence. 展开更多
关键词 stars:formation stars:early-type ISM:HⅡregions ISM:individual(CFG028.68-0.28 IRDC G28.53-0.25 and N49)
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