论文标题

HII区域和高质量无星团候选人I:目录和属性

HII regions and high-mass starless clump candidates I: Catalogs and properties

论文作者

Zhang, S., Zavagno, A., Yuan, J., Liu, H., Figueira, M., Russeil, D., Schuller, F., Marsh, K. A., Wu, Y.

论文摘要

电离反馈对高质量(> 8 mSUN)恒星形成(HMSF)的作用仍然高度争议。关于附近HII区域的存在仍然存在问题,这会改变HMSF早期的特性以及HII区域是否促进或抑制高质量恒星的形成。为了表征HII区域在HMSF中的作用,我们研究了高质量无星团(HMSC)样本的特性,其中约90%的质量大于100 MSUN。这些高质量物体可能代表了HMSF的最早阶段。我们搜索是否(以及如何)通过HII区域的存在来修改其属性。我们利用了最近发布的HMSC候选人目录。通过与HMSC和HII区域进行交叉匹配,我们将HMSC分为三类:1)与HII区域相关的HMSC在天空的投影平面和速度下处于位置; 2)在天空平面上相关的HMSC,但不在速度上; 3)HMSC远离预计的天空飞机上的任何HII地区。我们基于从红外线到无线电的多波长数据的统计分析,对相关和非相关的HMSC进行了比较。统计分析表明,与HII区域相关的HMSC较温暖,更发光,更中央和湍流。我们还清楚地表明,由于HII区域的外部加热效应,HMSF早期的HMSC(L/M)的骨仪与构层质量的比率不可能是可靠的进化探针。与HII区域相关的HMSC的更集中峰值和湍流特性可以通过限制碎片化来促进高质量恒星的形成。对HMSC的高分辨率干涉测量测量对于揭示HII区域如何影响HMSC内的恒星形成过程至关重要。

The role of ionization feedback on high-mass (>8 Msun) star formation (HMSF) is still highly debated. Questions remain concerning the presence of nearby HII regions changes the properties of early HMSF and whether HII regions promote or inhibit the formation of high-mass stars. To characterize the role of HII regions on the HMSF, we study the properties of a sample of candidates high-mass starless clumps (HMSCs), of which about 90% have masses larger than 100 Msun. These high-mass objects probably represent the earliest stages of HMSF; we search if (and how) their properties are modified by the presence of an HII region. We took advantage of the recently published catalog of HMSC candidates. By cross matching the HMSCs and HII regions, we classified HMSCs into three categories: 1) The HMSCs associated with HII regions both in the position in the projected plane of the sky and in velocity; 2) HMSCs associated in the plane of the sky, but not in velocity; and 3) HMSCs far away from any HII regions in the projected sky plane. We carried out comparisons between associated and nonassociated HMSCs based on statistical analyses of multiwavelength data from infrared to radio. Statistical analyses suggest that HMSCs associated with HII regions are warmer, more luminous, more centrally-peaked and turbulent. We also clearly show, for the first time, that the ratio of bolometric luminosity to envelope mass of HMSCs (L/M) could not be a reliable evolutionary probe for early HMSF due to the external heating effects of the HII regions. More centrally peaked and turbulent properties of HMSCs associated with HII regions may promote the formation of high-mass stars by limiting fragmentation. High resolution interferometric surveys toward HMSCs are crucial to reveal how HII regions impact the star formation process inside HMSCs.

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