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Study and application of the resonant secular dynamics beyond Neptune

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arxiv 1611.04480 v1 pith:5D3EVPKZ submitted 2016-11-14 astro-ph.EP

classification astro-ph.EP
keywords perihelionseculardistancedynamicsneptuneobjectsexternalfound
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We use a secular representation to describe the long-term dynamics of transneptunian objects in mean-motion resonance with Neptune. The model applied is thoroughly described in Saillenfest et al. (2016). The parameter space is systematically explored, showing that the secular trajectories depend little on the resonance order. High-amplitude oscillations of the perihelion distance are reported and localised in the space of the orbital parameters. In particular, we show that a large perihelion distance is not a sufficient criterion to declare that an object is detached from the planets. Such a mechanism, though, is found unable to explain the orbits of Sedna or 2012VP113, which are insufficiently inclined (considering their high perihelion distance) to be possibly driven by such a resonant dynamics. The secular representation highlights the existence of a high-perihelion accumulation zone due to resonances of type 1:k with Neptune. That region is found to be located roughly at semi-major axes in [100;300] AU, perihelion distances in [50;70] AU and inclinations [30;50]{\deg}. In addition to the flux of objects directly coming from the Scattered Disc, numerical simulations show that the Oort Cloud is also a substantial source for such objects. Naturally, as that mechanism relies on fragile captures in high-order resonances, our conclusions break down in the case of a significant external perturber. The detection of such a reservoir could thus be an observational constraint to probe the external Solar System.

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

  1. Libration of Pluto's argument of perihelion and the role of the major planets

    astro-ph.EP 2025-05 accept novelty 5.0 of 10

    Pluto's perihelion libration is enabled by the orbit-averaged secular perturbations of Jupiter, Saturn, and Uranus, which raise the critical k² from about 0.30 to above Pluto's 0.87.

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