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Atmospheric Circulation and Cloud Evolution on the Highly Eccentric Extrasolar Planet HD 80606b

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arxiv 1706.00466 v1 pith:JC6KEAFP submitted 2017-06-01 astro-ph.EP

classification astro-ph.EP
keywords atmosphericpassageperiapsenearobservationsobservedperiodphase
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Observations of the highly-eccentric (e~0.9) hot-Jupiter HD 80606b with Spitzer have provided some of best probes of the physics at work in exoplanet atmospheres. By observing HD 80606b during its periapse passage, atmospheric radiative, advective, and chemical timescales can be directly measured and used to constrain fundamental planetary properties such as rotation period, tidal dissipation rate, and atmospheric composition (including aerosols). Here we present three-dimensional general circulation models for HD 80606b that aim to further explore the atmospheric physics shaping HD 80606b's observed Spitzer phase curves. We find that our models that assume a planetary rotation period twice that of the pseudo-synchronous rotation period best reproduce the phase variations observed for HD~80606b near periapse passage with Spitzer. Additionally, we find that the rapid formation/dissipation and vertical transport of clouds in HD 80606b's atmosphere near periapse passage likely shapes its observed phase variations. We predict that observations near periapse passage at visible wavelengths could constrain the composition and formation/advection timescales of the dominant cloud species in HD 80606b's atmosphere. The time-variable forcing experienced by exoplanets on eccentric orbits provides a unique and important window on radiative, dynamical, and chemical processes in planetary atmospheres and an important link between exoplanet observations and theory.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 15 citations worldwide. Full citation record

  1. The Effects of Kinematic MHD on the Atmospheric Circulation of Eccentric Hot Jupiters

    astro-ph.EP 2025-02 conditional novelty 6.0 of 10

    New 3D simulations of the eccentric hot Jupiter TOI-150b show that a locally calculated magnetic drag weakens the equatorial jet and produces inter-orbit variability in high-resolution emission spectra.

  2. Clouds of Fluffy Aggregates: How They Form in Exoplanetary Atmospheres and Influence Transmission Spectra

    astro-ph.EP 2019-08 conditional novelty 6.0 of 10

    Fractal-shaped, low-density cloud aggregates can rise to much higher altitudes in exoplanet atmospheres than compact spheres, flattening transmission spectra as observed for GJ1214b.

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