A dynamical mechanism for establishing apsidal resonance
arXiv:astro-ph/0207126 · doi:10.1086/342637
Abstract
We show that in a system of two planets initially in nearly circular orbits, an impulse perturbation that imparts a finite eccentricity to one planet's orbit causes the other planet's orbit to become eccentric as well, and also naturally results in a libration of their relative apsidal longitudes for a wide range of initial conditions. We suggest that such a mechanism may explain orbital eccentricities and apsidal resonance in some exo-planetary systems. The eccentricity impulse could be caused by the ejection of a planet from these systems, or by torques from a primordial gas disk. The amplitude of secular variations provides an observational constraint on the dynamical history of such systems.
to appear in ApJ-Letters
References in corpus (2)
Cited by in corpus (31)
- Hot Jupiters from Coplanar High-eccentricity Migration
- Secular dynamics of the three body problem: application to the upsilon Andromedae planetary system
- Evidence for Planet-Planet Scattering in Upsilon Andromedae
- Kepler-20: A Sun-like Star with Three Sub-Neptune Exoplanets and Two Earth-size Candidates
- The (In)Stability of Planetary Systems
- Retired A Stars and Their Companions VI. A Pair of Interacting Exoplanet Pairs Around the Subgiants 24 Sextanis and HD200964
- Predicting Planets in Known Extra-Solar Planetary Systems I: Test Particle Simulations
- Planetary Systems in Binaries. I. Dynamical Classification
- The California Planet Survey III. A Possible 2:1 Resonance in the Exoplanetary Triple System HD 37124
- The Dynamics of Two Massive Planets on Inclined Orbits
- The Librating Companions in HD 37124, HD 12661, HD 82943, 47 Uma and GJ 876: Alignment or Antialignment?
- Modeling the 3--D Secular Planetary Three-Body Problem. Discussion on the outer Andromedae Planetary System
- Could the 55 Cancri Planetary System Really Be in the 3:1 Mean Motion Resonance?
- On the Stability of Test Particles in Extrasolar Multiple Planet Systems
- Origin and Dynamics of the Mutually Inclined Orbits of Upsilon Andromedae c and d
- The 3-dimensional architecture of the Upsilon Andromedae planetary system
- Occurrence and Stability of Apsidal Resonance in Multiple Planetary Systems
- Behavior of Apsidal Orientations in Planetary Systems
- Apsidal Behavior Among Planetary Orbits: Testing the Planet-Planet Scattering Model
- An Integrable Model for the Dynamics of Planetary Mean Motion Resonances
- Evidence that the Directly-Imaged Planet HD 131399 Ab is a Background Star
- Secular Evolution of HD 12661: A System Caught at an Unlikely Time
- Extrasolar planetary dynamics with a generalized planar Laplace-Lagrange secular theory
- Orbital stability of coplanar two-planet exosystems with high eccentricities
- Secular transport during disk dispersal: the case of Kepler-419
- Characterizing Multi-planet Systems with Classical Secular Theory
- Origin and continuation of 3/2, 5/2, 3/1, 4/1 and 5/1 resonant periodic orbits in the circular and elliptic restricted three-body problem
- Excitation of Orbital Eccentricities by Repeated Resonance Crossings: Requirements
- Puzzling out the coexistence of terrestrial planets and giant exoplanets. The 2/1 resonant periodic orbits
- Secular Behavior of Exoplanets: Self-Consistency and Comparisons with the Planet-Planet Scattering Hypothesis
- Extrasolar Planet Interactions