On the corotation torque in a radiatively inefficient disk

被引:169
作者
Baruteau, C. [1 ]
Masset, F. [2 ]
机构
[1] Univ Paris Diderot, CEA DSM CNRS, DAPNIA, CEA Saclay,Lab AIM,Serv Astrophys, F-91191 Gif Sur Yvette, France
[2] IA Univ Nacl Autonoma Mexico, Mexico City 04510, DF, Mexico
关键词
accretion; accretion disks; hydrodynamics; methods : numerical; planetary systems : formation; planetary systems : protoplanetary disks;
D O I
10.1086/523667
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We consider the angular momentum exchange at the corotation resonance between a two-dimensional gaseous disk and a uniformly rotating external potential, assuming that the disk flow is adiabatic. We first consider the linear case for an isolated resonance, for which we give an expression of the corotation torque that involves the pressure perturbation and which reduces to the usual dependence on the vortensity gradient in the limit of a cold disk. Although this expression requires the solution of the hydrodynamic equations, it provides some insight into the dynamics of the corotation region. In the general case, we find an additional dependence on the entropy gradient at corotation. This dependence is associated with the advection of entropy perturbations. These are not associated with pressure perturbations. They remain confined to the corotation region, where they yield a singular contribution to the corotation torque. In a second part, we check our torque expression by means of customized two-dimensional hydrodynamical simulations. In a third part, we contemplate the case of a planet embedded in a Keplerian disk, assumed to be adiabatic. We find an excess of corotation torque that scales with the entropy gradient, and we check that the contribution of the entropy perturbation to the torque is in agreement with the expression obtained from the linear analysis. We finally discuss some implications of the corotation torque expression for the migration of low-mass planets in the regions of protoplanetary disks where the flow is radiatively inefficient on the timescale of the horseshoe U-turns.
引用
收藏
页码:1054 / 1067
页数:14
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