首页> 外文期刊>The Astrophysical Journal. Letters >THE MIGRATION OF GAP-OPENING PLANETS IS NOT LOCKED TO VISCOUS DISK EVOLUTION
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THE MIGRATION OF GAP-OPENING PLANETS IS NOT LOCKED TO VISCOUS DISK EVOLUTION

机译:缺口开放的迁移并不局限于粘滞的磁盘进化

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摘要

Most standard descriptions of Type II migration state that massive, gap-opening planets must migrate at the viscous drift rate. This is based on the idea that the disk is separated into an inner and outer region and gas is considered unable to cross the gap. In fact, gas easily crosses the gap on horseshoe orbits, nullifying this necessary premise which would set the migration rate. In this work, it is demonstrated using highly accurate numerical calculations that the actual migration rate is dependent on disk and planet parameters, and can be significantly larger or smaller than the viscous drift rate. In the limiting case of a disk much more massive than the secondary, the migration rate saturates to a constant that is sensitive to disk parameters and is not necessarily of the order of the viscous rate. In the opposite limit of a low-mass disk, the migration rate decreases linearly with disk mass. Steady-state solutions in the low disk mass limit show no pile-up outside the secondary's orbit, and no corresponding drainage of the inner disk.
机译:关于II型迁移的大多数标准描述都指出,巨大的,有大量缺口的行星必须以粘性漂移速率迁移。这是基于这样的想法,即,将盘分成内部区域和外部区域,并且认为气体无法穿过间隙。实际上,气体很容易越过马蹄形轨道的缝隙,从而消除了确定迁移率的必要前提。在这项工作中,使用高精度的数值计算证明了实际的迁移速率取决于磁盘和行星的参数,并且可以显着大于或小于粘性漂移速率。在磁盘比第二磁盘大得多的极限情况下,迁移速度会饱和到一个对磁盘参数敏感的常数,而不一定是粘性速度的数量级。在低质量磁盘的相反极限中,迁移率随磁盘质量线性降低。在低磁盘质量限制范围内的稳态解表明,在次级轨道之外没有堆积,也没有相应的内部磁盘排水。

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