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Thermal atmospheric tides can torque telluric planets away from spin-orbit synchronous rotation, as observed in the case of Venus. They thus participate to determine the possible climates and general circulations of the atmospheres of these…

地球与行星天体物理 · 物理学 2018-02-07 Pierre Auclair-Desrotour , Stéphane Mathis , Jacques Laskar

Thousands of exoplanets have been detected to date, and with future planned missions this tally will increase. Understanding the climate dependence on the planetary parameters is vital for the study of terrestrial exoplanet habitability.…

地球与行星天体物理 · 物理学 2019-08-14 Ilai Guendelman , Yohai Kaspi

We investigate how night side cooling and surface friction impact surface temperatures and large scale circulation for tidally locked Earth-like planets. For each scenario, we vary the orbital period between $P_{rot}=1-100$~days and capture…

地球与行星天体物理 · 物理学 2016-06-01 L. Carone , R. Keppens , L. Decin

Can atmospheric waves in planet-hosting solar-like stars substantially resonate to tidal forcing? Substantially at a level of impacting the space weather or even of being dynamo-relevant? In particular, low-frequency Rossby waves, which…

太阳与恒星天体物理 · 物理学 2023-02-22 G. M. Horstmann , G. Mamatsashvili , A. Giesecke , T. V. Zaqarashvili , F. Stefani

We use the Massachusetts Institute of Technology general circulation model (GCM) dynamical core, in conjunction with a Newtonian relaxation scheme that relaxes to a gray, analytical solution of the radiative transfer equation, to simulate a…

地球与行星天体物理 · 物理学 2015-06-04 Angela M. Zalucha , Timothy I. Michaels , Nikku Madhusudhan

I review recent progress in the theory of relativistic jet production. The presently favored mechanism is an electrodynamic one, in which charged plasma is accelerated by electric fields that are generated by a rotating magnetic field. The…

天体物理学 · 物理学 2007-05-23 David L. Meier

The connection between transport barriers and potential vorticity (PV) barriers in PV-conserving flows is investigated with a focus on zonal jets in planetary atmospheres. A perturbed PV-staircase model is used to illustrate important…

大气与海洋物理 · 物理学 2009-11-13 F. J. Beron-Vera , M. G. Brown , M. J. Olascoaga , I. I. Rypina , H. Kocak , I. A. Udovydchenkov

The numerical simulations of planetary dynamos still operate in a regime very far from the planets. For example, it seems unlikely that viscous forces are at all significant in planetary interiors, yet some of the simulations display a…

地球与行星天体物理 · 物理学 2015-06-18 P A Davidson

Sub-Neptunes (planets with radii between 2 and 4 R$_{\oplus}$) are abundant around M-dwarf stars, yet the atmospheric dynamics of these planets is relatively unexplored. In this paper, we aim to provide a basic underpinning of the dry…

地球与行星天体物理 · 物理学 2022-03-04 Hamish Innes , Raymond T. Pierrehumbert

Over the past two decades, a coherent picture has emerged of the atmospheric dynamics of hot Jupiters from a combination of three-dimensional general circulation models (GCMs) and astronomical observations. This paradigm consists of hot…

地球与行星天体物理 · 物理学 2025-02-27 Thaddeus D. Komacek

Data from the Galileo Probe, collected during its descent into Jupiter's atmosphere, is used to obtain a vertical profile of the zonal wind from $\mathbf{\sim 0.5}$ bar (upper troposphere) to $\mathbf{\sim 0.1\, \mu{bar}}$ (lower…

地球与行星天体物理 · 物理学 2013-03-11 C. Watkins , J. Y-K. Cho

I present results from the first global hydrodynamical simulations of the elliptical instability in a tidally deformed gaseous planet (or star) with a free surface. The elliptical instability is potentially important for tidal evolution of…

地球与行星天体物理 · 物理学 2016-04-20 Adrian J. Barker

This thesis presents a newly developed theory for the formation and maintenance of eddy-driven jets in planetary turbulence. The novelty is that jet formation and maintenance is studied as a dynamics of the statistics of the flow rather…

大气与海洋物理 · 物理学 2019-04-09 Navid C. Constantinou

Turbulence and large-scale waves in the tropical region are studied using the spherical shallow water equations. With mesoscale vorticity forcing, both moist and dry systems show kinetic energy scaling that is dominated by rotational modes,…

大气与海洋物理 · 物理学 2021-04-28 J. Schröttle , D. L. Suhas , N. Harnik , J. Sukhatme

Planetary rotation rate is a key parameter in determining atmospheric circulation and hence the spatial pattern of clouds. Since clouds can exert a dominant control on planetary radiation balance, rotation rate could be critical for…

地球与行星天体物理 · 物理学 2014-04-29 Jun Yang , Gwenael Boue , Daniel C. Fabrycky , Dorian S. Abbot

Tidally locked worlds provide a unique opportunity for constraining the probable climates of certain exoplanets. They are unique in that few exoplanet spin and obliquity states are known or will be determined in the near future: both of…

地球与行星天体物理 · 物理学 2023-08-02 Cody J. Shakespeare , Jason H. Steffen

We study rapidly-rotating Boussinesq convection driven by internal heating in a full sphere. We use a numerical model based on the quasi-geostrophic approximation for the velocity field, whereas the temperature field is three-dimensional.…

流体动力学 · 物理学 2017-09-05 Céline Guervilly , Philippe Cardin

Tidal dissipation in star-planet systems can occur through various mechanisms, among which is the elliptical instability. This acts on elliptically deformed equilibrium tidal flows in rotating fluid planets and stars, and excites inertial…

地球与行星天体物理 · 物理学 2023-07-12 Nils B. de Vries , Adrian J. Barker , Rainer Hollerbach

Terrestrial planets orbiting within the habitable zones of M-stars are likely to become tidally locked in a 1:1 spin:orbit configuration and are prime targets for future characterization efforts. An issue of importance for the potential…

地球与行星天体物理 · 物理学 2019-11-06 Jade H. Checlair , Stephanie L. Olson , Malte F. Jansen , Dorian S. Abbot

Zonal jets (ZJ) are prominent coherent structures that spontaneously emerge from the background turbulent state in both stellar and planetary atmospheres. Although formation and maintenance of coherent jets from small scale hydrodynamic…

流体动力学 · 物理学 2026-03-10 Eojin Kim , Brian F. Farrell