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      Orbital Dynamics of Exoplanetary Systems Kepler-62, HD 200964 and Kepler-11

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          Abstract

          The presence of mean-motion resonances (MMRs) in exoplanetary systems is a new exciting field of celestial mechanics which motivates us to consider this work to study the dynamical behaviour of exoplanetary systems by time evolution of the orbital elements of the planets. Mainly, we study the influence of planetary perturbations on semimajor axis and eccentricity. We identify \((r+1):r\) MMR terms in the expression of disturbing function and obtain the perturbations from the truncated disturbing function. Using the expansion of the disturbing function of three-body problem and an analytical approach, we solve the equations of motion. The solution which is obtained analytically is compared with that of obtained by numerical method to validate our analytical result. In this work, we consider three exoplanetary systems namely Kepler-62, HD 200964 and Kepler-11. We have plotted the evolution of the resonant angles and found that they librate around constant value. In view of this, our opinion is that two planets of each system Kepler-62, HD 200964 and Kepler-11 are in 2:1, 4:3 and 5:4 mean motion resonances, respectively. Keywords:astrometry - celestial mechanics - planetary systems.

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          Author and article information

          Journal
          2016-01-09
          2016-02-12
          Article
          10.1093/mnras/stw086
          1601.02110
          32631ef0-3a28-430b-83a8-b37066cbbb30

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          70F15
          Monthly Notices of the Royal Astronomical Society 2016 457 (1): 1089-1100
          E-mail:rajibmia.90@gmail.com, bskush@gmail.com
          astro-ph.EP

          Planetary astrophysics
          Planetary astrophysics

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