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The Dynamical History of HIP-41378 f -- Oblique Exorings Masquerading as a Puffy Planet

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arxiv 2410.00641 v1 pith:37GM22J5 submitted 2024-10-01 astro-ph.EP

classification astro-ph.EP
keywords hip-41378planetringsystemdynamicalexplanationhighhistory
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The super-puff HIP-41378 f represents a fascinating puzzle due to its anomalously low density on a far-out orbit in contrast with other known super-puffs. In this work, we explore the hypothesis that HIP-41378 f is not in fact a low-density planet, but rather hosts an opaque ring system. We analyze the dynamical history of the system, and show that convergent migration is necessary to explain the system's long-term stability. We then show that this same migration process plausibly captures HIP-41378 f into spin-orbit resonance and excites the planetary obliquity to high values. This tilts the surrounding ring and is a plausible explanation for the large transit depth. In the end, we also briefly comment on the likelihood of other super-puff planets being in high-obliquity states. We show that the existence of a tilted extensive ring around a high obliquity planet can serve as an explanation for puffy planets, particularly in multi-planetary systems at far distances from their host stars.

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

  1. A potential exomoon from the predicted planet obliquity of $\beta$ Pictoris b

    astro-ph.EP 2024-12 accept novelty 6.0 of 10

    A Neptune-mass exomoon at 40-70 planet radii could excite beta Pictoris b's obliquity to 60 degrees via spin-orbit resonance.

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