论文标题

大型原始恒星AFGL 2591 VLA 3的室外环境的多波长建模3

Multi-wavelength modelling of the circumstellar environment of the massive proto-star AFGL 2591 VLA 3

论文作者

Olguin, F. A., Hoare, M. G., Johnston, K. G., Motte, F., Chen, H. -R. V., Beuther, H., Mottram, J. C., Ahmadi, A., Gieser, C., Semenov, D., Peters, T., Palau, A., Klaassen, P. D., Kuiper, R., Sánchez-Monge, Á., Henning, Th.

论文摘要

我们已经研究了原型巨大的年轻恒星物体(MYSO)AFGL 2591。鉴于其高亮度($ l = 2 \ times 10^5 $ l $ _ \ odot $)和距离($ d = 3.3 $ kpc),AFGL 2591的最高$ $ \ sss corlt carts,我们已经研究了原型的年轻恒星对象(MYSO)AFGL 2591。发射比任何其他MySO。因此,本文提供了一个模板,介绍了如何使用解决的多波长数据和辐射传递以获得良好的二-D Axi对称分析旋转旋转输入模型。我们首次表明,Herschel 70 $μ$ M观察的分辨尘埃连续发射沿流出方向扩展,其起源是由流出腔墙中的温暖灰尘解释的。但是,该模型只能解释CH $ _3 $ CN观测值的运动功能,该观测值不切实际,低恒星质量($ <15 $ m $ _ \ odot $),这表明其他物理过程可能在减慢信封旋转方面起作用。作为我们三步连续和线路拟合的一部分,我们确定了可以通过特定观察结果进一步限制的模型参数。安装了高分辨率MM可见性以获得圆盘质量(6 m $ _ \ odot $)和半径(2200 au)。使用SED和近IR观测的组合来估计光度和包膜质量以及流出腔倾斜度和开口角。

We have studied the dust density, temperature and velocity distributions of the archetypal massive young stellar object (MYSO) AFGL 2591. Given its high luminosity ($L=2 \times 10^5$ L$_\odot$) and distance ($d=3.3$ kpc), AFGL 2591 has one of the highest $\sqrt{L}/d$ ratio, giving better resolved dust emission than any other MYSO. As such, this paper provides a template on how to use resolved multi-wavelength data and radiative transfer to obtain a well-constrained 2-D axi-symmetric analytic rotating infall model. We show for the first time that the resolved dust continuum emission from Herschel 70 $μ$m observations is extended along the outflow direction, whose origin is explained in part from warm dust in the outflow cavity walls. However, the model can only explain the kinematic features from CH$_3$CN observations with unrealistically low stellar masses ($<15$ M$_\odot$), indicating that additional physical processes may be playing a role in slowing down the envelope rotation. As part of our 3-step continuum and line fitting, we have identified model parameters that can be further constrained by specific observations. High-resolution mm visibilities were fitted to obtain the disc mass (6 M$_\odot$) and radius (2200 au). A combination of SED and near-IR observations were used to estimate the luminosity and envelope mass together with the outflow cavity inclination and opening angles.

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