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Non-linear development of secular gravitational instability in protoplanetary disks

机译:原行星盘中长期重力失稳的非线性发展

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We perform non-linear simulation of secular gravitational instability (GI) in protoplanetary disks, which has been proposed as a mechanism of planetesimal and multiple ring formation. Since the timescale of the growth of the secular GI is much longer than the Keplerian rotation period, we develop a new numerical scheme for a long-term calculation utilizing the concept of symplectic integration. With our new scheme, we first investigate the non-linear development of the secular GI in a disk without a pressure gradient in the initial state. We find that the surface density of dust increases by more than a factor of 100 while that of gas does not increase even by a factor of 2, which results in the formation of dust-dominated rings. A line mass of the dust ring tends to be very close to the critical line mass of a self-gravitating isothermal filament. Our results indicate that the non-linear growth of the secular GI provides a powerful mechanism to concentrate the dust. We also find that the dust ring formed via the non-linear growth of the secular GI migrates inward with a low velocity, which is driven by the self-gravity of the ring. We give a semi-analytical expression for the inward migration speed of the dusty ring.
机译:我们在原行星盘中进行长期重力失稳(GI)的非线性模拟,这已被提出为行星小行星和多环形成的机制。由于世代胃肠道生长的时间尺度比开普勒旋转周期长得多,因此我们利用辛积分概念开发了一种用于长期计算的新数值方案。利用我们的新方案,我们首先研究了在初始状态下没有压力梯度的磁盘中长期胃肠道的非线性发展。我们发现,粉尘的表面密度增加了100倍以上,而气体的表面密度甚至没有增加2倍,这导致形成了以粉尘为主的环。防尘环的线质量趋于非常接近自重力等温丝的临界线质量。我们的结果表明,世俗胃肠道的非线性增长提供了一种强大的机制来聚集灰尘。我们还发现,由世俗胃肠道的非线性增长形成的尘埃环以低速向内迁移,这是由环的自重驱动的。我们给出了尘土环向内迁移速度的半解析表达式。

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