论文标题

周围偏心二进制的巨大逆行环盘的极性对齐

Polar alignment of a massive retrograde circumbinary disc around an eccentric binary

论文作者

Abod, Charles P., Chen, Cheng, Smallwood, Jeremy, Rabago, Ian, Martin, Rebecca G., Lubow, Stephen H.

论文摘要

围绕偏心二进制的测试粒子轨道具有两个固定状态,其中没有淋巴结序列:共面和极性。这些固定状态之一的未对准测试粒子轨道中心的淋巴结进程。低质量圆盘会经历相同的进动,并通过光盘内的耗散向其中一个状态移动。对于庞大的粒子轨道,固定极点对齐的倾斜度小于$ 90^{\ Circ} $,这是Prograde-Polar固定倾斜度。足够高的角动量颗粒具有较高的较高倾斜度固定态,即逆行式固定倾斜度。靠近逆行极线固定倾斜的未对准的粒子轨道不像靠近其他固定点的轨道那样嵌套。我们研究了开始接近逆行式固定倾斜度的气盘的演变。通过流体动力盘模拟,我们发现圆盘穿过未缠绕的新月形进液轨道,最终朝着前极性固定倾斜倾斜,从而增加了圆盘朝极极对齐的参数空间。如果与二进制轨道相对于二进制轨道形成了与各向同性方向的原星盘,那么极性盘可能比偏心二进制的共辉圆盘更常见,即使对于大型盘子也是如此。这对环形行星的一致性有影响。

A test particle orbit around an eccentric binary has two stationary states in which there is no nodal precession: coplanar and polar. Nodal precession of a misaligned test particle orbit centres on one of these stationary states. A low mass circumbinary disc undergoes the same precession and moves towards one of these states through dissipation within the disc. For a massive particle orbit, the stationary polar alignment occurs at an inclination less than $90^{\circ}$, this is the prograde-polar stationary inclination. A sufficiently high angular momentum particle has an additional higher inclination stationary state, the retrograde-polar stationary inclination. Misaligned particle orbits close to the retrograde-polar stationary inclination are not nested like the orbits close to the other stationary points. We investigate the evolution of a gas disc that begins close to the retrograde-polar stationary inclination. With hydrodynamical disc simulations, we find that the disc moves through the unnested crescent shape precession orbits and eventually moves towards the prograde-polar stationary inclination thus increasing the parameter space over which circumbinary discs move towards polar alignment. If protoplanetary discs form with an isotropic orientation relative to the binary orbit, then polar discs may be more common than coplanar discs around eccentric binaries, even for massive discs. This has implications for the alignment of circumbinary planets.

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