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Related papers: The Origin of Jupiter's Great Red Spot

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Jupiter's fast rotation - one rotation over 10 hours - creates strong jet streams, smearing its clouds into linear bands of dark and light zonal belts that circle the planet on lines of almost constant latitude. Such a high degree of…

Chaotic Dynamics · Physics 2014-07-16 Alireza Hadjighasem , George Haller

The Great Red Spot at about latitude $22^{\circ}S$ of Jupiter has been observed for hundreds of years, yet the driving mechanism on the formation of this giant anticyclone still remains unclear. Two scenarios were proposed to explain its…

Earth and Planetary Astrophysics · Physics 2022-08-03 Tao Cai , Kwing L. Chan , Kim-Chiu Chow

In this paper, Jupiter's Great Red Spot (GRS) is used to determine properties of the Jovian atmosphere that cannot otherwise be found. These properties include the potential vorticity of the GRS and its neighboring jet streams, the shear…

Fluid Dynamics · Physics 2008-01-10 Sushil Shetty , Xylar S. Asay-Davis , Philip S. Marcus

One of Jupiter's most prominent atmospheric features, the Great Red Spot (GRS), has been observed for more than two centuries, yet little is known about its structure and dynamics below its observed cloud-level. While its anticyclonic…

Earth and Planetary Astrophysics · Physics 2019-04-10 Eli Galanti , Yohai Kaspi , Frederik J. Simons , Daniele Durante , Marzia Parisi , Scott J. Bolton

Jupiter's Great Red Spot (GRS) was mapped by the James Webb Space Telescope (JWST)/Mid-Infrared Instrument (4.9-27.9 micron) in July and August 2022. These observations took place alongside a suite of visual and infrared observations from;…

The origin of the red colouration in Jupiter's Great Red Spot (GRS) is a long-standing question in planetary science. While several candidate chromophores have been proposed, no clear conclusions have been reached regarding its nature,…

Earth and Planetary Astrophysics · Physics 2026-02-18 Asier Anguiano-Arteaga , Santiago Perez-Hoyos , Agustin Sanchez-Lavega , Patrick G. J. Irwin

We explain the emergence and stability of the most important jets and vortices, in the highly turbulent Jupiter's atmosphere, by a statistical mechanics of the potential vorticity mixing. Using the Quasi-Geostrophic 1-1/2 layer, with…

Statistical Mechanics · Physics 2007-05-23 Freddy Bouchet , Thierry Dumont

The transition region between the North Equatorial Band (NEBn) and North Tropical Zone (NTrZ) in Jupiter is home to convective storms, systems of cyclones and anticyclones and atmospheric waves. A large anticyclone formed in the year 2006…

We have produced mosaics of the Great Red Spot (GRS) using images taken by the Galileo spacecraft in May 2000, and have measured the winds of the GRS using an automated algorithm that does not require manual cloud tracking. Our technique…

Earth and Planetary Astrophysics · Physics 2013-01-28 David S. Choi , Don Banfield , Peter J. Gierasch , Adam P. Showman

Detailed observations of the velocities of Jovian vortices exist at only one height in the atmosphere, so their vertical structures are poorly understood. This motivates this study that computes stable 3-dimensional, long-lived planetary…

Fluid Dynamics · Physics 2024-01-09 Aidi Zhang , Philip S. Marcus

The Jovian atmosphere contains a wide diversity of vortices, which have a large range of sizes, colors and forms in different dynamical regimes. The formation processes for these vortices is poorly understood, and aside from a few known,…

Earth and Planetary Astrophysics · Physics 2024-09-24 Ramanakumar Sankar , Shawn Brueshaber , Lucy Fortson , Candice Hansen-Koharcheck , Chris Lintott , Cooper Nesmith , Glenn Orton

Structural changes of self-organized vortices in Jupiter atmospheres such as Great Red Spot (GRS) and White Ovals are demonstrated using an electrostatically bounded charged dust cloud in an unbounded streaming plasma as the prototype for…

Plasma Physics · Physics 2018-11-26 Modhuchandra Laishram , Ping Zhu , Devendra Sharma

The Great Red Spot (GRS) of Jupiter has been observed for over a century, with researchers studying its characteristics and dynamics, including its size, depth, movement, and interactions with its environment. Recently, the f-plane…

Atmospheric and Oceanic Physics · Physics 2025-12-29 Oladiran Johnson Abimbola

We explain the emergence and robustness of intense jets in highly turbulent planetary atmospheres, like on Jupiter, by a general approach of statistical mechanics of potential vorticity patches. The idea is that potential vorticity mixing…

Fluid Dynamics · Physics 2007-05-23 F. Bouchet , J. Sommeria

The surface of both Jupiter and Saturn has magnificent vortical storms which help shape the dynamic nature of their atmospheres. Land- and space-based observational campaigns over time have established several properties of these vortices,…

Earth and Planetary Astrophysics · Physics 2020-11-17 Rakesh Kumar Yadav , Moritz Heimpel , Jeremy Bloxham

Jupiter's dynamics shapes its cloud patterns but remains largely unknown below this natural observational barrier. Unraveling the underlying three-dimensional flows is thus a primary goal for NASA's ongoing Juno mission that was launched in…

Earth and Planetary Astrophysics · Physics 2020-11-24 Daphné Lemasquerier , Giulio Facchini , Benjamin Favier , Michael Le Bars

When the Sun ascends the red giant branch (RGB), its luminosity will increase and all the planets will receive much greater irradiation than they do now. Jupiter, in particular, might end up more highly irradiated than the hot Neptune GJ…

Earth and Planetary Astrophysics · Physics 2015-06-05 David S. Spiegel , Nikku Madhusudhan

The Sun was an order of magnitude more luminous during the first few hundred thousand years of its existence, due in part to the gravitational energy released by material accreting from the Solar nebula. If Jupiter was already near its…

Earth and Planetary Astrophysics · Physics 2015-05-30 N. J. Turner , M. Choukroun , J. Castillo-Rogez , G. Bryden

We explore here the idea, reminiscent in some respect of Von Weizsacker's (1944) and Alfven's (1976) outmoded cosmogonies, that long-lived vortices in a turbulent protoplanetary nebula can capture large amount of solid particles and…

Astrophysics · Physics 2007-05-23 P. Barge , J. Sommeria

Hot Jupiters, giant extrasolar planets with orbital periods shorter than ~10 days, have long been thought to form at large radial distances, only to subsequently experience long-range inward migration. Here, we propose that in contrast with…

Earth and Planetary Astrophysics · Physics 2016-10-05 Konstantin Batygin , Peter H. Bodenheimer , Gregory P. Laughlin
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