...
首页> 外文期刊>The Astrophysical journal >ORBITAL MIGRATION OF INTERACTING LOW-MASS PLANETS IN EVOLUTIONARY RADIATIVE TURBULENT MODELS
【24h】

ORBITAL MIGRATION OF INTERACTING LOW-MASS PLANETS IN EVOLUTIONARY RADIATIVE TURBULENT MODELS

机译:演化辐射湍流模型中相互作用低质量行星的轨道迁移

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The torques exerted by a locally isothermal disk on an embedded planet lead to rapid inward migration. Recent work has shown that modeling the thermodynamics without the assumption of local isothermality reveals regions where the net torque on an embedded planet is positive, leading to outward migration of the planet. When a region with negative torque lies directly exterior to this, planets in the inner region migrate outward and planets in the outer region migrate inward, converging where the torque is zero. We incorporate the torques from an evolving non-isothermal disk into an N-body simulation to examine the behavior of planets or planetary embryos interacting in the convergence zone. We find that mutual interactions do not eject objects from the convergence zone. Small numbers of objects in a laminar disk settle into near resonant orbits that remain stable over the 10?Myr periods that we examine. However, either or both increasing the number of planets or including a correlated, stochastic force to represent turbulence drives orbit crossings and mergers in the convergence zone. These processes can build gas giant cores with masses of order 10 Earth masses from sub-Earth mass embryos in 2-3 Myr.
机译:局部等温盘在嵌入式行星上施加的扭矩导致快速向内迁移。最近的工作表明,在不假设局部等温的情况下对热力学进行建模可以揭示嵌入式行星上净转矩为正的区域,从而导致行星向外迁移。当负转矩区域直接位于外部时,内部区域的行星向外移动,而外部区域的行星向内移动,收敛到转矩为零的位置。我们将来自不断发展的非等温圆盘的扭矩合并到N体模拟中,以检查在收敛区域相互作用的行星或行星胚胎的行为。我们发现相互的交互不会从会聚区域弹出对象。层状盘中的少量物体沉降到近共振轨道上,这些轨道在我们研究的10?Myr周期内保持稳定。但是,要么增加行星数量,要么要么增加行星数量,要么包括相关的随机力来表示湍流,从而驱动会聚区的轨道交叉和合并。这些过程可以从2-3 Myr的亚地球质量胚胎中构建质量约为10个地球质量的气体巨核。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号