论文标题

电离,磁化原始圆盘的垂直剪切不稳定性

The vertical shear instability in poorly ionised, magnetized protoplanetary discs

论文作者

Latter, Henrik N., Kunz, Matthew W.

论文摘要

原球盘应在其旋转曲线上表现出弱垂直变化。通常,此“垂直剪切”问题来自中央恒星辐射场驱动的斜压效应,但在发射磁中心风中也可能出现。结果,原星盘会受到流体动力学不稳定性的约束,即“垂直剪切不稳定性”(VSI),其破坏湍流可能会传递适量的角动量并促进或干扰行星形成的过程。但是,磁场可以通过磁张力直接抑制VSI,也可以通过磁性湍流间接抑制。另一方面,原球盘臭名昭著的低电离部分表现出,如果足够主导的话,则可能会挽救VSI的救助。在本文中,我们开发了一种本地线性理论,该理论探讨了非理想的MHD如何影响VSI,同时还启动了其他扩散剪切不稳定性。我们得出了一组分析标准,该标准确定何时占用VSI,然后展示如何将其应用于原星盘的现实全局模型。我们的计算表明,在〜10AU中,VSI在磁盘的主体上不可能遇到麻烦,但是除此之外,在椎间盘的上部区域外,它的发作敏感地取决于优势粉尘晶粒的大小。

Protoplanetary discs should exhibit a weak vertical variation in their rotation profiles. Typically this `vertical shear' issues from a baroclinic effect driven by the central star's radiation field, but it might also arise during the launching of a magnetocentrifugal wind. As a consequence, protoplanetary discs are subject to a hydrodynamical instability, the `vertical shear instability' (VSI), whose breakdown into turbulence could transport a moderate amount of angular momentum and facilitate, or interfere with, the process of planet formation. Magnetic fields may suppress the VSI, however, either directly via magnetic tension or indirectly through magnetorotational turbulence. On the other hand, protoplanetary discs exhibit notoriously low ionisation fractions, and non-ideal effects, if sufficiently dominant, may come to the VSI's rescue. In this paper we develop a local linear theory that explores how non-ideal MHD influences the VSI, while also launching additional diffusive shear instabilities. We derive a set of analytical criteria that establish when the VSI prevails, and then show how it can be applied to a realistic global model of a protoplanetary disc. Our calculations suggest that within ~10au the VSI should have little trouble emerging in the main body of the disk, but beyond that, and in the upper regions of the disc, its onset depends sensitively on the size of the preponderant dust grains.

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