论文标题

在融合轨道上的低质量行星周围的灰尘分布

Dust distribution around low-mass planets on converging orbits

论文作者

Marzari, Francesco, D'Angelo, Gennaro

论文摘要

超产量可以在大轨道半径上形成,并由于与偶色磁盘的潮汐相互作用而向内迁移。在这种情况下,可能会发生融合迁移,并导致形成谐振的行星对。我们探讨了会收敛迁移和共振捕获的条件,以及在谐振对周围的灰尘分布中可能会产生什么动态后果。我们将流体动力行星 - 磁盘相互作用模型与尘埃演化计算相结合,以研究通过平均动作共振的一对行星在尘埃分布中产生的特征。我们发现,当外行星更大时,会趋同迁移发生。但是,收敛迁移也取决于磁盘的局部特性,并且也可能导致不同的迁移。对于类似的磁盘参数,低度共振(例如2:1或3:2)的捕获是接近恒星的首选,在该恒星中,共振强度更容易地克服了气盘施加的潮汐扭矩。远离恒星,收敛的迁移可能会导致高度共振。灰尘分布通常显示出可观察到的特征,当时行星被困在2:1共振中时。在其他情况下,具有较高程度的共振(例如5:4或6:5)的灰尘特征可能不足以易于观察。一对超级诞生建立的共振程度可能表明磁盘发生的位置。单个超级地球周围的灰尘分布可能存在显着差异,在共振中会存在一对超级地球。

Super-Earths can form at large orbital radii and migrate inward due to tidal interactions with the circumstellar disk. In this scenario, convergent migration may occur and lead to the formation of resonant pairs of planets. We explore the conditions under which convergent migration and resonance capture take place, and what dynamical consequences can be expected on the dust distribution surrounding the resonant pair. We combine hydrodynamic planet--disk interaction models with dust evolution calculations to investigate the signatures produced in the dust distribution by a pair of planets in mean-motion resonances. We find that convergent migration takes place when the outer planet is the more massive. However, convergent migration also depends on the local properties of the disk, and divergent migration may result as well. For similar disk parameters, the capture in low degree resonances (e.g., 2:1 or 3:2) is preferred close to the star where the resonance strength can more easily overcome the tidal torques exerted by the gaseous disk. Farther away from the star, convergent migration may result in capture in high degree resonances. The dust distribution shows potentially observable features typically when the planets are trapped in a 2:1 resonance. In other cases, with higher degree resonances (e.g., 5:4 or 6:5) dust features may not be sufficiently pronounced to be easily observable. The degree of resonance established by a pair of super-Earths may be indicative of the location in the disk where capture occurred. There can be significant differences in the dust distribution around a single super-Earth and a pair of super-Earths in resonance.

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