A multi‐transition CO and 13CO survey of the Galactic Plane

Back to the Galaxy Pub Date : 2008-05-29 DOI:10.1063/1.43993
D. Sanders, N. Scoville, R. Tilanus, Z. Wang, S. Zhou
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引用次数: 4

Abstract

A survey of the Galactic Plane in the (2→1) and (3→2) rotational transitions of CO and 13CO has been carried out using the 10 m telescope of the Caltech Submillimeter Observatory (CSO). These data, plus previous observations of (1→0) emission from CO and 13CO obtained with at the Five College Radio Astronomy Observatory (FCRAO), have been used to determine the excitation properties of the molecular gas [Tk, n(H2)] throughout the disk of the Milky Way. The bulk of the molecular gas outside the galactic center (R/R⊙≳0.05 kpc) appears to be slightly colder, Tk=10–15 °K, and denser, n(H2)=103–104 cm−3, than previously assumed. There are no obvious gradients in temperature and cloud H2 density with galactocentric radius, although the molecular clouds in the galactic center and near the peak of the galactic ring at R/R⊙=0.4–0.6 are on average warmer (Tk∼15–20 °K) than the molecular material at other radii. The large H2 volume density derived from the CO data implies that a general internal property of molecular...
银道面多跃迁CO和13CO巡天
利用加州理工学院亚毫米天文台(CSO)的10米望远镜对CO和13CO的(2→1)和(3→2)旋转跃迁中的银道面进行了观测。这些数据,加上先前在五校射电天文台(FCRAO)获得的CO和13CO(1→0)发射的观测结果,已被用于确定整个银河系盘中的分子气体[Tk, n(H2)]的激发特性。银河系中心外的大部分分子气体(R/R⊙≥0.05 kpc)似乎比先前假设的稍冷,Tk= 10-15°K,而密度更大,n(H2)= 103-104 cm−3。温度和云H2密度随星系中心半径的变化没有明显的梯度,尽管星系中心和星系环峰值附近R/R = 0.4-0.6处的分子云比其他半径处的分子物质平均温度高(Tk ~ 15-20°K)。从CO数据中得到的大H2体积密度意味着分子的一般内部性质。
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