论文标题

大型恒星反馈在两颗星星云中两个恒星形成区域中气体的分布,分布和运动学中的反馈作用

Effect of feedback of massive stars in the fragmentation, distribution, and kinematics of the gas in two star forming regions in the Carina Nebula

论文作者

Rebolledo, David, Guzmán, Andrés E., Contreras, Yanett, Garay, Guido, Medina, S. -N. X., Sanhueza, Patricio, Green, Anne J., Castro, Camila, Guzmán, Viviana, Burton, Michael G.

论文摘要

我们向位于星系中恒星形成最极端区域之一的两个星形区域之一的Alma高空间分辨率观测值。一个区域位于星云的中心,受到高质量恒星的恒星反馈的严重影响,而另一个区域则位于更南方,并且受到巨大的恒星簇的干扰。我们发现,星云中心的区域的形成比南部的区域较少但更大的核心,这表明恒星反馈的水平有效地影响了团块的碎裂过程。 HCN,HCO $^{+} $和SIO等线路在两个区域都显示出丰富而复杂的气体分布,从而证实了电离和冲击阵线的存在。牛仔裤分析表明,该区域中观察到的核心质量受巨大恒星的影响较小与热碎片一致,但是湍流牛仔裤的碎片可能解释了在Cari​​na中心区域中鉴定出的核心的高质量。一致地,HCO $^{+} $行中的两个不同分析为更高水平的气体湍流提供了证据,更受恒星反馈影响。气柱密度概率函数N-PDFS显示对数正态正态形状,并清晰地向电力法律进行过渡。我们在星云中心的区域观察到了较宽的N-PDF,这提供了进一步的证据,证明材料中具有更高水平的巨大恒星反馈的湍流水平更高。

We present ALMA high spatial resolution observations towards two star forming regions located in one of the most extreme zones of star formation in the Galaxy, the Carina Nebula. One region is located at the center of the nebula and is severally affected by the stellar feedback from high-mass stars, while the other region is located further south and is less disturbed by the massive star clusters. We found that the region at the center of the nebula is forming less but more massive cores than the region located in the south, suggesting that the level of stellar feedback effectively influence the fragmentation process in clumps. Lines such as HCN, HCO$^{+}$ and SiO show abundant and complex gas distributions in both regions, confirming the presence of ionization and shock fronts. Jeans analysis suggests that the observed core masses in the region less affected by the massive stars are consistent with thermal fragmentation, but turbulent Jeans fragmentation might explain the high masses of the cores identified in the region in the center of Carina. Consistently, two different analyses in the HCO$^{+}$ line provided evidence for a higher level of turbulence in the gas more affected by the stellar feedback. The gas column density probability functions, N-PDFs, show log-normal shapes with clear transitions to power law regimes. We observed a wider N-PDF in the region at the center of the nebula, which provides further evidence for a higher level of turbulence in the material with a higher level of massive stellar feedback.

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