论文标题

Rossby涡流的动力签名

Dynamical signatures of Rossby vortices in cavity-hosting disks

论文作者

Robert, Clément Mathieu Tristan, Méheut, Héloïse, Ménard, François

论文摘要

环境:在年轻的气体和灰尘盘中形成行星。后者是通过热辐射追踪的,在少数情况下,观察到强烈的不对称团块。当固体从微米大小到行星可能性生长时,这些尘埃陷阱可能是了解行星形成的早期阶段的关键。目的:涡流是少数已知的不对称尘埃捕获场景之一。目前的工作旨在预测它们在可观察的互补性中的特征。也就是说,视线速度非常适合追踪涡流的存在。此外,磁盘的动态受到最近的发展。方法:在气体耗尽区域的边缘形成涡流的情况下,进行了2D水力模拟。我们得出了理想化的视线速度图,相对于观察者的变化磁盘温度和方向。感兴趣的信号作为对速度中主要轴测组分的微小扰动,可以使用代理使用主导的准凯伯速度的代理在观测数据中分离出来的信号。我们提出,观察性主要轴上的速度曲线是如此的代理。结果:将我们的方法应用于HD 142527附近的磁盘作为研究案例,我们预测,视磁盘温度的不同,当前可用的设施几乎无法检测到视线速度。我们表明,还可以通过相似的光谱分辨率检测到相应的螺旋模式,这将有助于区分替代解释。

Context: Planets are formed amidst young circumstellar disks of gas and dust. The latter is traced by thermal radiation, where strong asymmetric clumps were observed in a handful of cases. These dust traps could be key to understand the early stages of planet formation, when solids grow from micron-size to planetesimals. Aims: Vortices are among the few known asymmetric dust trapping scenarios. The present work aims at predicting their characteristics in a complementary observable. Namely, line-of-sight velocities are well suited to trace the presence of a vortex. Moreover, the dynamics of disks is subject to recent developments. Methods: 2D hydro-simulations were performed where a vortex forms at the edge of a gas depleted region. We derived idealized line-of-sight velocity maps, varying disk temperature and orientation relative to the observer. The signal of interest, as a small perturbation to the dominant axisymetric component in velocity, may be isolated in observational data using a proxy for the dominant quasi-Keplerian velocity. We propose that the velocity curve on the observational major axis be such a proxy. Results: Applying our method to the disk around HD 142527 as a study case, we predict line-of-sight velocities scarcely detectable by currently available facilities, depending on disk temperature. We show that corresponding spirals patterns can also be detected with similar spectral resolutions, which will help discriminating against alternative explanations.

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