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Jupiter's infrared image

What stir up Jupiter's unearthly jet streams and storms?

Credit: Gemini Observatory

Dr Xianyu Tan

Visitor

Research theme

  • Astronomy and astrophysics
  • Exoplanets and planetary physics

Sub department

  • Atmospheric, Oceanic and Planetary Physics

Research groups

  • Planetary Climate Dynamics
xianyu.tan@physics.ox.ac.uk
Atmospheric Physics Clarendon Laboratory, room 209 G
  • About
  • Research
  • Publications

Influences of Internal Forcing on Atmospheric Circulations of Irradiated Giant Planets

The Astrophysical Journal American Astronomical Society 928:2 (2022) 166-166

Authors:

Yuchen Lian, Adam P Showman, Xianyu Tan, Yongyun Hu

Abstract:

Abstract Close-in giant planets with strong stellar irradiation show atmospheric circulation patterns with strong equatorial jets and global-scale stationary waves. So far, almost all modeling works on atmospheric circulations of such giant planets have mainly considered external radiation alone, without taking into account the role of internal heat fluxes or just treating it in very simplified ways. Here, we study atmospheric circulations of strongly irradiated giant planets by considering the effect of internal forcing, which is characterized by small-scale stochastic interior thermal perturbations, using a three-dimensional atmospheric general circulation model. We show that the perturbation-excited waves can largely modify atmospheric circulation patterns in the presence of relatively strong internal forcing. Specifically, our simulations demonstrate three circulation regimes: a superrotation regime, a midlatitude-jet regime, and a quasi-periodic oscillation regime, depending on the relative importance of external and internal forcings. It is also found that strong internal forcing can cause noticeable modifications of the thermal phase curves.

Jet Streams and Tracer Mixing in the Atmospheres of Brown Dwarfs and Isolated Young Giant Planets

ArXiv 2203.10523 (2022)

Weak Seasonality on Temperate Exoplanets Around Low-mass Stars

ArXiv 2203.1051 (2022)

Cloud-convection feedback in brown dwarfs atmosphere

(2022)

Authors:

Maxence Lef猫vre, Xianyu Tan, Elspeth KH Lee, RT Pierrehumbert

HST/WFC3 Complete Phase-resolved Spectroscopy of White-dwarf-brown-dwarf Binaries WD 0137 and EPIC 2122

The Astronomical Journal American Astronomical Society 163:1 (2022) 17

Authors:

Yifan Zhou, D谩niel Apai, Xianyu Tan, Joshua D Lothringer, Ben WP Lew, Sarah L Casewell, Vivien Parmentier, Mark S Marley, Siyi Xu, LC Mayorga

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