论文标题

探测银河系HII区域S305中的物理条件和星形形成过程

Probing the physical conditions and star formation processes in the Galactic HII region S305

论文作者

Dewangan, L. K., Sharma, Saurabh, Pandey, Rakesh, del Palacio, S., Ojha, D. K., Benaglia, P., Baug, T., Das, S. R.

论文摘要

我们提出了银河HII区S305的多尺度和多波长观测值,该观测值受到大量O8.5V和O9.5V星的激发。红外图像揭示了一个延长的球形外壳(扩展〜7.5 pc;在T_D = 17.5-27 K时)包含S305 HII区域(尺寸〜5.5 pc;年龄〜1.7 Myr)。在赫歇尔温度图中观察到的扩展结构表明,S305的分子环境被大量的O型恒星加热。还研究了朝向红外壳的边缘进行了定期间隔的分子凝结和灰尘团,还观察到PAH和H_2发射。分子线数据显示了S305中分子气的扩展壳的标志。 GMRT 610和1280 MHz连续图揭示了分布在两个O型恒星周围的电离发射的过度,它们被马蹄形信封包围(扩展〜2.3 PC)。分子气体缺陷区域/空腔被鉴定出朝向马蹄形膜的中心,该中心与PAH,H_2,分子和灰尘发射相处得很好。发现红外外壳的边缘位于马蹄形信封的前部。所有这些结果提供了S305中O型恒星反馈的观察证据。此外,在S305中检测到非热无线电发射,平均光谱指数alpha〜-0.45。由于柔软的同步加速器的发射和高频下的光学粉状发射或通过Razin-Tsytovich效应抑制低频发射,因此可以解释α的变化,范围为-1.1至1.3。

We present multi-scale and multi-wavelength observations of the Galactic HII region S305, which is excited by massive O8.5V and O9.5V stars. Infrared images reveal an extended sphere-like shell (extension ~7.5 pc; at T_d = 17.5-27 K) enclosing the S305 HII region (size ~5.5 pc; age ~1.7 Myr). The extended structure observed in the Herschel temperature map indicates that the molecular environment of S305 is heated by the massive O-type stars. Regularly spaced molecular condensations and dust clumps are investigated toward the edges of the infrared shell, where the PAH and H_2 emission is also observed. The molecular line data show a signature of an expanding shell of molecular gas in S305. GMRT 610 and 1280 MHz continuum maps reveal overdensities of the ionized emission distributed around two O-type stars, which are surrounded by the horseshoe envelope (extension ~2.3 pc). A molecular gas deficient region/cavity is identified toward the center of the horseshoe envelope, which is well traced with PAH, H_2, molecular, and dust emission. The edges of the infrared shell are found to be located in the front of the horseshoe envelope. All these outcomes provide the observational evidence of the feedback of O-type stars in S305. Moreover, non-thermal radio emission is detected in S305 with an average spectral index alpha ~-0.45. The variations in alpha, ranging from -1.1 to 1.3, are explained due to soft synchrotron emission and either optically-thicker thermal emission at high frequencies or a suppression of the low-frequency emission by the Razin-Tsytovich effect.

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