论文标题

圆盘包裹的同伴周围的进步和逆行气流:依赖于偏心率,质量和磁盘特性

Prograde and Retrograde Gas Flow around Disk-embedded Companions: Dependence on Eccentricity, Mass and Disk Properties

论文作者

Chen, Yi-Xian, Bailey, Avery, Stone, James M., Zhu, Zhaohuan

论文摘要

我们应用3D流体动力学模拟,研究围绕其主要宿主的积聚磁盘中的偏心伴侣周围气体流量模式的旋转方面。我们采样了广泛的伴随质量比Q和磁盘纵横比h,并确认从轨道偏心超过关键值ET的逆向交通流量(背景开普勒剪切占主导地位)的通用过渡到逆行(背景开普勒剪切占主导地位)。我们为亚热伴侣找到ET \ sim H,而et \ sim(q/h)^1/3对于超热伴侣,并提出了一个经验公式来统一两种情况。我们的结果还表明,ET对以运动学粘度项的形式建模的湍流不敏感。 In the context of stellar-mass Black Holes (sBHs) embedded in AGN accretion disks, the bifurcation of their circum-stellar disk (CSD) rotation suggest the formation of a population of nearly anti-aligned sBHs, whose relevance to low spin gravitational waves (GW) events can be probed in more details with future population models of sBH evolution in AGN disks, making use of our quantitative扩展ET;在周围磁盘(CPD)的背景下,我们的结果表明,在偏心行星周围逆行CPD中形成逆行卫星的可能性。

We apply 3D hydrodynamical simulations to study the rotational aspect of gas flow patterns around eccentric companions embedded in an accretion disk around its primary host. We sample a wide range of companion mass ratio q and disk aspect ratio h, and confirm a generic transition from prograde (steady tidal interaction dominated) to retrograde (background Keplerian shear dominated) circum-companion flow when orbital eccentricity exceeds a critical value et. We find et \sim h for sub-thermal companions while et \sim (q/h)^1/3 for super-thermal companions, and propose an empirical formula to unify the two scenarios. Our results also suggest that et is insensitive to modest levels of turbulence, modeled in the form of a kinematic viscosity term. In the context of stellar-mass Black Holes (sBHs) embedded in AGN accretion disks, the bifurcation of their circum-stellar disk (CSD) rotation suggest the formation of a population of nearly anti-aligned sBHs, whose relevance to low spin gravitational waves (GW) events can be probed in more details with future population models of sBH evolution in AGN disks, making use of our quantitative scaling for et; In the context of circum-planetary disks (CPDs), our results suggest the possibility of forming retrograde satellites in-situ in retrograde CPDs around eccentric planets.

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