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Dynamical Evolution of Multi-Resonant Systems: the Case of GJ876

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arxiv 1504.00051 v1 pith:KNJK3RB4 submitted 2015-03-31 astro-ph.EP math.DSnlin.CD

classification astro-ph.EPmath.DSnlin.CD
keywords systemknownchaoticplanetsevolutionformationgj876laplace
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The GJ876 system was among the earliest multi-planetary detections outside of the Solar System, and has long been known to harbor a resonant pair of giant planets. Subsequent characterization of the system revealed the presence of an additional Neptune mass object on an external orbit, locked in a three body Laplace mean motion resonance with the previously known planets. While this system is currently the only known extrasolar example of a Laplace resonance, it differs from the Galilean satellites in that the orbital motion of the planets is known to be chaotic. In this work, we present a simple perturbative model that illuminates the origins of stochasticity inherent to this system and derive analytic estimates of the Lyapunov time as well as the chaotic diffusion coefficient. We then address the formation of the multi-resonant structure within a protoplanetary disk and show that modest turbulent forcing in addition to dissipative effects is required to reproduce the observed chaotic configuration. Accordingly, this work places important constraints on the typical formation environments of planetary systems and informs the attributes of representative orbital architectures that arise from extended disk-driven evolution.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Observing a 542-day transiting giant with large TTVs: The 2025 transit of HIP 41378 f and new constraints on the outer system

    astro-ph.EP 2026-06 unverdicted novelty 5.0 of 10

    New 2025 transit timing of HIP 41378 f shows a 7-hour early arrival consistent with TTVs; N-body modeling with TRADES refines ephemerides for planets d, e, and f.

  2. Recurrence Network Analysis of Exoplanetary Observables

    astro-ph.EP 2019-08 conditional novelty 5.0 of 10

    Recurrence network measures from RV and TTV time series can separate regular from chaotic exoplanet dynamics, with Kepler-36b flagged as irregular.

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