论文标题

限制嵌入式质恒星的插入信封模型:BHR 71及其热Corino

Constraining the Infalling Envelope Models of Embedded Protostars: BHR 71 and its Hot Corino

论文作者

Yang, Y. -L., Evans II, N. J., Smith, A., Lee, J. -E., Tobin, J. J., Terebey, S., Calcutt, H., Jorgensen, J. K., Green, J. D., Bourke, T. L.

论文摘要

原恒星包膜的崩溃导致原恒星的生长和原球盘的发展,在恒星形成的早期阶段起着至关重要的作用。在包膜中表征气体中心会约束恒星形成的动态模型。我们提出了由光学较厚的分子线探测的无迹象的插入,朝着孤立的嵌入式原恒星BHR 71 IRS1探测。三个维辐射传输计算表明,“内部倒塌”后的一个缓慢旋转的插入式包络模型再现了两个HCO $^{+} $ $ j = 4 \ rightArrow3 $和CS $ J = 7 \ rightArrow6 $ lines的观察结果,以及右arciS $ J = 7 \ rightarrow 6 $,以及hcn $ j $ j = 4 $ j = 4 $ rightorar。该信封的模型衍生的年龄为12000美元$ \ pm $ \ pm $ 3000年后3000年。信封模型低估了HCN $ j = 4 \ rightArrow3 $和H $^{13} $ CN $ J = 4 \ rightArrow3 $ Lines,其中流出或开kplerian磁盘可能会贡献的高速速度排放。 ALMA观察结果偶然发现了集中在100 au半径内的复杂有机分子(COM)的发射,表明BHR 71 IRS1具有热的Corino。确定了八种coms,包括ch $ _ {3} $ oh和ch $ _ {3} $ ocho,以及h $ _ {2} $ cs,所以$ _ {2} $和hcn $ v_ {2} = 1 $。甲基甲酸酯和$^{13} $ c-methanol的发射显示在50 au半径内的清晰速度梯度,暗示未解决的开普勒旋转磁盘。

The collapse of the protostellar envelope results in the growth of the protostar and the development of a protoplanetary disk, playing a critical role during the early stages of star formation. Characterizing the gas infall in the envelope constrains the dynamical models of star formation. We present unambiguous signatures of infall, probed by optically thick molecular lines, toward an isolated embedded protostar, BHR 71 IRS1. The three dimensional radiative transfer calculations indicate that a slowly rotating infalling envelope model following the "inside-out" collapse reproduces the observations of both HCO$^{+}$ $J=4\rightarrow3$ and CS $J=7\rightarrow6$ lines, and the low velocity emission of the HCN $J=4\rightarrow3$ line. The envelope has a model-derived age of 12000$\pm$3000 years after the initial collapse. The envelope model underestimates the high velocity emission at the HCN $J=4\rightarrow3$ and H$^{13}$CN $J=4\rightarrow3$ lines, where outflows or a Keplerian disk may contribute. The ALMA observations serendipitously discover the emission of complex organic molecules (COMs) concentrated within a radius of 100 au, indicating that BHR 71 IRS1 harbors a hot corino. Eight species of COMs are identified, including CH$_{3}$OH and CH$_{3}$OCHO, along with H$_{2}$CS, SO$_{2}$ and HCN $v_{2}=1$. The emission of methyl formate and $^{13}$C-methanol shows a clear velocity gradient within a radius of 50 au, hinting at an unresolved Keplerian rotating disk.

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