Three Body Resonance Overlap in Closely Spaced Multiple Planet Systems
arXiv:1106.0156 · doi:10.1111/j.1365-2966.2011.19555.x
Abstract
We compute the strengths of zero-th order (in eccentricity) three-body resonances for a co-planar and low eccentricity multiple planet system. In a numerical integration we illustrate that slowly moving Laplace angles are matched by variations in semi-major axes among three bodies with the outer two bodies moving in the same direction and the inner one moving in the opposite direction, as would be expected from the two quantities that are conserved in the three-body resonance. A resonance overlap criterion is derived for the closely and equally spaced, equal mass system with three-body resonances overlapping when interplanetary separation is less than an order unity factor times the planet mass to the one quarter power. We find that three-body resonances are sufficiently dense to account for wander in semi-major axis seen in numerical integrations of closely spaced systems and they are likely the cause of instability of these systems. For interplanetary separations outside the overlap region, stability timescales significantly increase. Crudely estimated diffusion coefficients in eccentricity and semi-major axis depend on a high power of planet mass and interplanetary spacing. An exponential dependence previously fit to stability or crossing timescales is likely due to the limited range of parameters and times possible in integration and the strong power law dependence of the diffusion rates on these quantities.
submitted to MNRAS
References in corpus (8)
- Dynamical Outcomes of Planet-Planet Scattering
- Simulations of star formation in a gaseous disc around sgr A* - a failed AGN
- Post-Oligarchic Evolution of Protoplanetary Embryos and the Stability of Planetary Systems
- Stability Limits in Extra-solar Planetary Systems
- Planet-planet scattering in planetesimal disks
- From mean-motion resonances to scattered planets: Producing the Solar System, eccentric exoplanets and Late Heavy Bombardments
- The long-term stability of extrasolar system HD 37124. Numerical study of resonance effects
- On the relationship between instability and Lyapunov times for the 3-body problem
Cited by in corpus (80)
- Architecture of Kepler's Multi-transiting Systems: II. New investigations with twice as many candidates
- A seven-planet resonant chain in TRAPPIST-1
- Exoplanet Statistics and Theoretical Implications
- A resonant chain of four transiting, sub-Neptune planets
- First order resonance overlap and the stability of close two planet systems
- Long-term evolution of three-planet systems to the post-Main Sequence and beyond
- Detectable close-in planets around white dwarfs through late unpacking
- Predicting the long-term stability of compact multiplanet systems
- Migration of two massive planets into (and out of) first order mean motion resonances
- The stability of tightly-packed, evenly-spaced systems of Earth-mass planets orbiting a Sun-like star
- The Orbital Stability of Planets Trapped in the First-Order Mean-Motion Resonances
- A Criterion for the Onset of Chaos in Systems of Two Eccentric Planets
- Planet Hunters VII. Discovery of a New Low-Mass, Low-Density Planet (PH3 c) Orbiting Kepler-289 with Mass Measurements of Two Additional Planets (PH3 b and d)
- Multiple mean motion resonances in the HR 8799 planetary system
- The Laplace resonance in the Kepler-60 system
- A Tale of Planet Formation: From Dust to Planets
- The path to instability in compact multi-planetary systems
- Circumbinary Chaos: Using Pluto's Newest Moon to Constrain the Masses of Nix & Hydra
- A semi-empirical stability criterion for real planetary systems
- Traditional formation scenarios fail to explain 4:3 mean motion resonances
- A dynamical analysis of the Kepler-11 planetary system
- Atlas of three body mean motion resonances in the Solar System
- The unseen planets of double belt debris disk systems
- Stability of the Kepler-11 System and its Origin
- Origin Scenarios for the Kepler 36 Planetary System
- Limits on orbit crossing planetesimals in the resonant multiple planet system, KOI-730
- Orbital Stability of Multi-Planet Systems: Behavior at High Masses
- Resonance Capture and Dynamics of 3-Planet Systems
- Dynamical instability and its implications for planetary system architecture
- The Reversibility Error Method (REM): a new, dynamical fast indicator for planetary dynamics
- Planet Packing in Circumbinary Systems
- Planetary and satellite three body mean motion resonances
- A Criterion for the Stability of Planets in Chains of Resonances
- Resonant Chains and Three-body Resonances in the Closely-Packed Inner Uranian Satellite System
- Prospects for detecting decreasing exoplanet frequency with main sequence age using PLATO
- Fundamental limits from chaos on instability time predictions in compact planetary systems
- Effects of non-Kozai mutual inclinations on two-planet system stability through all phases of stellar evolution
- The dynamical evolution of transiting planetary systems including a realistic collision prescription
- How Close are Compact Multi-Planet Systems to the Stability Limit?
- Transit Timing Variations in the three-planet system: TOI-270
- A Tidal Origin for a 3-body Resonance in Kepler-221
- The Criterion for Chaos in Three-Planet Systems
- celmech: A Python package for celestial mechanics
- Super-Earth ingestion can explain the anomalously high metal abundances of M67 Y2235
- Orbital stability of compact three-planet systems, I: Dependence of system lifetimes on initial orbital separations and longitudes
- An integrable model for first-order three-planet mean motion resonances
- Stability Constrained Characterization of Multiplanet Systems
- Stable lifetime of compact, evenly-spaced planetary systems with non-equal masses
- The instability mechanism of compact multiplanet systems
- Chaotic Dynamics of Trans-Neptunian Objects Perturbed by Planet Nine
- Habitability properties of circumbinary planets
- Nekhoroshev Estimates for the Survival Time of Tightly Packed Planetary Systems
- Detection of separatrices and chaotic seas based on orbit amplitudes
- The tidal parameters of TRAPPIST-1 b and c
- Is the orbital distribution of multiplanet systems influenced by pure three-planet resonances?
- Three-Body Resonances in the Saturnian System
- Architecture of three-planet systems predicted from the observed protoplanetary disk of HL Tau
- Orbital stability of compact three-planet systems, II: Post-instability impact behaviour
- Normal forms for the Laplace resonance
- Global dynamics and architecture of the Kepler-444 system
- High-resolution resonant portraits of a single-planet white dwarf system
- Breaking long-period resonance chains with stellar flybys
- The Perturbation Theory Approach to Stability in the Scattered Disk
- Web of resonances and possible path of evolution of the small Uranian satellites
- Constraints on Evolutionary Timescales for M Dwarf Planets from Dynamical Stability Arguments
- Extended planetary chaotic zones
- A Bayesian neural network predicts the dissolution of compact planetary systems
- Close-in compact super-Earth systems emerging from resonant chains: slow destabilization by unseen remnants of formation
- Secular Dynamics of Compact Three-Planet Systems
- Moon-packing around an Earth-mass Planet
- The formation of transiting circumplanetary debris discs from the disruption of satellite systems during planet-planet scattering
- Bifurcated Evolutionary Pathways in Multi-planet Systems Driven by Misaligned Protoplanetary Disks
- The stability of unevenly spaced planetary systems
- Orbital stability of compact three-planet systems III. The role of three-body resonances
- Dynamical Evolution of Planetary Systems
- A Criterion for the Onset of Chaos in Compact, Eccentric Multiplanet Systems
- Semi-analytical model for planetary resonances: application to planets around single and binary stars
- Advanced Techniques in Stability Analysis of Trans-Neptunian Objects
- Instability from high-order resonant chains in wide-separation massive planet systems
- Dynamical orbital evolution scenarios of the wide-orbit eccentric planet HR 5183b