...
首页> 外文期刊>The Astrophysical journal >TRANSIT TIMING VARIATIONS FOR PLANETS NEAR ECCENTRICITY-TYPE MEAN MOTION RESONANCES
【24h】

TRANSIT TIMING VARIATIONS FOR PLANETS NEAR ECCENTRICITY-TYPE MEAN MOTION RESONANCES

机译:偏心型平均运动共振附近行星的过渡时间变化

获取原文

摘要

We derive the transit timing variations (TTVs) of two planets near a second-order mean motion resonance (MMR) on nearly circular orbits. We show that the TTVs of each planet are given by sinusoids with a frequency of , where is an integer characterizing the resonance and n2 and n1 are the mean motions of the outer and inner planets, respectively. The amplitude of the TTV depends on the mass of the perturbing planet, relative to the mass of the star, and on both the eccentricities and longitudes of pericenter of each planet. The TTVs of the two planets are approximated anti-correlated, with phases of and , where the phase also depends on the eccentricities and longitudes of pericenter. Therefore, the TTVs caused by proximity to a second-order MMR do not in general uniquely determine both planet masses, eccentricities, and pericenters. This is completely analogous to the case of TTVs induced by two planets near a first-order MMR. We explore how other TTV signals, such as the short-period synodic TTV or a first-order resonant TTV, in combination with the second-order resonant TTV, can break degeneracies. Finally, we derive approximate formulae for the TTVs of planets near any order eccentricity-type MMR; this shows that the same basic sinusoidal TTV structure holds for all eccentricity-type resonances. Our general formula reduces to previously derived results near first-order MMRs.
机译:我们推导了在近似圆形轨道上的二阶平均运动共振(MMR)附近的两个行星的过渡时间变化(TTV)。我们显示,每个行星的TTV由频率为的正弦波给出,其中是表征共振的整数,n2和n1分别是外行星和内行星的平均运动。 TTV的振幅取决于扰动行星的质量(相对于恒星的质量),还取决于每个行星的中心偏心率和经度。两颗行星的TTV近似为反相关的,相位为和,其中相位还取决于中心偏心率和经度。因此,由接近二阶MMR引起的TTV通常不能唯一地确定行星质量,偏心率和中心。这完全类似于由一阶MMR附近的两个行星感应的TTV的情况。我们探讨了其他TTV信号,例如短周期的共济会TTV或一阶共振TTV,再结合二阶共振TTV,如何能够破坏简并性。最后,我们推导了任何阶数的偏心型MMR附近行星的TTV的近似公式;这表明相同的基本正弦TTV结构适用于所有偏心型共振。我们的一般公式简化为一阶MMR附近的先前得出的结果。

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