论文标题

由于静电屏障而抑制了微米大小的灰尘的凝结

Inhibited Coagulation of Micron-size Dust Due to the Electrostatic Barrier

论文作者

Akimkin, V. V., Ivlev, A. V., Caselli, P.

论文摘要

固体磁盘中固体物质的碰撞演化是行星,彗星和行星形成的关键步骤。尽管密集的原球网环境有利于快速粉尘凝结,但有几个因素限制了从星际微米大小的晶粒到卵石大小的聚集体的直接途径。除了谷物弹跳,碎裂和快速漂移到中心恒星外,一个显着的限制因素是静电排斥类似晶粒。在这项研究中,我们旨在将粉尘凝结的理论建模以及灰尘充电和磁盘电离计算。我们表明,静电屏障是在磁盘死区(抑制湍流)中凝结粉尘凝结的强大限制因子。虽然持续的湍流有助于克服静电屏障,但灰尘骨料的低分形尺寸即使在这种情况下也可能阻止其进一步的凝血。库仑排斥可能会在磁盘大气和外部区域保持大量小灰尘。

The collisional evolution of solid material in protoplanetary disks is a crucial step in the formation of planetesimals, comets, and planets. Although dense protoplanetary environments favor fast dust coagulation, there are several factors that limit the straightforward pathway from interstellar micron-size grains to pebble-size aggregates. Apart from the grain bouncing, fragmentation, and fast drift to the central star, a notable limiting factor is the electrostatic repulsion of like-charged grains. In this study we aim at theoretical modeling of the dust coagulation coupled with the dust charging and disk ionization calculations. We show that the electrostatic barrier is a strong restraining factor to the coagulation of micrometer-size dust in dead zones of the disk (where the turbulence is suppressed). While the sustained turbulence helps to overcome the electrostatic barrier, low fractal dimensions of dust aggregates can potentially block their further coagulation even in this case. Coulomb repulsion may keep a significant fraction of small dust in the disk atmosphere and outer regions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源