论文标题

预测重力不稳定性的运动学证据

Predicting the kinematic evidence of gravitational instability

论文作者

Hall, C., Dong, R., Teague, R., Terry, J., Pinte, C., Paneque-Carreño, T., Veronesi, B., Alexander, R. D., Lodato, G.

论文摘要

对Atacama大毫米/亚毫米阵列(ALMA)的观察结果极大地改善了我们对外部球星形成部位的理解:Protoplanetary盘。但是,这些光盘的许多基本特性并不理解。其中最基本的是总圆盘质量,它为行星形成的质量预算设定了。足够高的圆盘会激发引力不稳定性,并驱动ALMA可检测的螺旋臂。尽管在阿尔玛(Alma)观察到灰尘的观察结果中发现了螺旋,但它们与重力不稳定和高圆盘质量的关联远非清晰。在这里,我们报告了重力不稳定性运动学证据的预测。使用流体动力学模拟,结合辐射转移计算,我们表明,这种不稳定性的光盘在整个圆盘中的方位角和半径上都具有明显的运动学特征,这些分子线观测在与观看角度无关。如果检测到这些签名,它将提供最明确的证据,证明在形成行星的椎间盘中发生重力不稳定性,并提供一种测量椎间盘质量的关键方法。

Observations with the Atacama Large Millimeter/Submillimeter array (ALMA) have dramatically improved our understanding of the site of exoplanet formation: protoplanetary discs. However, many basic properties of these discs are not well-understood. The most fundamental of these is the total disc mass, which sets the mass budget for planet formation. Discs with sufficiently high masses can excite gravitational instability and drive spiral arms that are detectable with ALMA . Although spirals have been detected in ALMA observations of the dust , their association with gravitational instability, and high disc masses, is far from clear. Here we report a prediction for kinematic evidence of gravitational instability. Using hydrodynamics simulations coupled with radiative transfer calculations, we show that a disc undergoing such instability has clear kinematic signatures in molecular line observations across the entire disc azimuth and radius which are independent of viewing angle. If these signatures are detected, it will provide the clearest evidence for the occurrence of gravitational instability in planet-forming discs, and provide a crucial way to measure disc masses.

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