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Atmospheric Circulation of Exoplanets

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arxiv 0911.3170 v1 pith:WUKAI5AE submitted 2009-11-16 astro-ph.EP

classification astro-ph.EP
keywords atmosphericplanetsexoplanetsdynamicsincludingbasiccirculationsolar-system
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We survey the basic principles of atmospheric dynamics relevant to explaining existing and future observations of exoplanets, both gas giant and terrestrial. Given the paucity of data on exoplanet atmospheres, our approach is to emphasize fundamental principles and insights gained from Solar-System studies that are likely to be generalizable to exoplanets. We begin by presenting the hierarchy of basic equations used in atmospheric dynamics, including the Navier-Stokes, primitive, shallow-water, and two-dimensional nondivergent models. We then survey key concepts in atmospheric dynamics, including the importance of planetary rotation, the concept of balance, and scaling arguments to show how turbulent interactions generally produce large-scale east-west banding on rotating planets. We next turn to issues specific to giant planets, including their expected interior and atmospheric thermal structures, the implications for their wind patterns, and mechanisms to pump their east-west jets. Hot Jupiter atmospheric dynamics are given particular attention, as these close-in planets have been the subject of most of the concrete developments in the study of exoplanetary atmospheres. We then turn to the basic elements of circulation on terrestrial planets as inferred from Solar-System studies, including Hadley cells, jet streams, processes that govern the large-scale horizontal temperature contrasts, and climate, and we discuss how these insights may apply to terrestrial exoplanets. Although exoplanets surely possess a greater diversity of circulation regimes than seen on the planets in our Solar System, our guiding philosophy is that the multi-decade study of Solar-System planets reviewed here provides a foundation upon which our understanding of more exotic exoplanetary meteorology must build.

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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 83 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. CARMApy: An Open-Source Python Framework for Simulating Microphysical Clouds in Planetary Atmospheres

    astro-ph.EP 2026-06 accept novelty 3.0 of 10

    CARMApy provides a Python interface to the ExoCARMA microphysics code, enabling simulation of cloud particle size distributions and rates in exoplanet atmospheres with claimed consistency to prior versions and speed g...

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