论文标题
对反射星云NGC 2023对CO云进行的运动学分析,使用Nobeyama 45 M望远镜观察到;进一步的证据证明了猎户座地区的云云碰撞
A kinematic analysis of the CO clouds toward a reflection nebula NGC 2023 observed with the Nobeyama 45 m telescope; Further evidence for a cloud-cloud collision in the Orion region
论文作者
论文摘要
我们已经分析了反射Nebula NGC 2023区域中的新CO($ j $ = 1-0)数据,特别关注分子气的详细运动学特性。结果表明,有两个速度成分,表明在19 $''$(= 0.04 pc)的高分辨率下揭示了动态相互作用的签名。基于结果,我们提出了一个假设,即两个云相互碰撞,并触发了B1.5 Star HD 37903的形成,除两个小簇中有20个低质量恒星,大小为2 pc。尽管先前的研究有利于HII区域的触发方案(例如Mookerjea等人,2009年),但目前的结果表明,HII区域的效果仅限于分子云的表面,并且不影响气体压缩和恒星形成。目前的结果为云云碰撞在形成高质量恒星中的主要作用外,除了$ \ sim $ 20 $ 20的较低质量恒星外,这也可能是由碰撞形成的。目前的情况表明,猎户座区域中的所有高质量恒星都是由云云碰撞形成的。
We have analyzed new CO($J$ = 1-0) data in the region of a reflection nebula NGC 2023 with a particular focus on the detailed kinematical properties of the molecular gas. The results show that there are two velocity components which indicate signatures of dynamical interaction revealed at a high resolution of 19$''$ (= 0.04 pc). Based on the results we propose a hypothesis that two clouds collided with each other and triggered the formation of the B1.5 star HD 37903 in addition to 20 lower mass stars in two small clusters with a size of 2 pc. Although the previous study favored a scheme of triggering by the HII region (e.g., Mookerjea et al. 2009), the present results show that the effect of the HII region is limited only to the surface of the molecular cloud, and does not contribute to the gas compression and star formation. The present results lend support for the dominant role of cloud-cloud collision in forming high mass stars in addition to $\sim$20 lower mass stars, which are also likely formed by the collision. The present case suggests all the high mass stars in the Orion region are formed by cloud-cloud collision.