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Using the semiclassical theory of dense matter proposed by P.Savic and R.Kasanin,the mean molecular masses of the Galilean satellites of Jupiter are determined.The calculated values are fitted by plausible combinations of chemical…

Astrophysics · Physics 2007-05-23 V. Celebonovic

A key feature of the Galilean satellite system is its monotonic decrease in bulk density with distance from Jupiter, indicating an ice mass fraction that is zero in the innermost moon Io, and about half in the outer moons Ganymede and…

Earth and Planetary Astrophysics · Physics 2023-03-01 Olivier Mousis , Antoine Schneeberger , Jonathan I. Lunine , Christopher R. Glein , Alexis Bouquet , Steven D. Vance

Spacecraft investigations during the last ten years have vastly improved our knowledge about dust in the Jovian system. All Galilean satellites, and probably all smaller satellites as well, are sources of dust in the Jovian system. In-situ…

Astrophysics · Physics 2007-05-23 Harald Krueger , Eberhard Gruen

The aim of this short contribution is to report some preliminary results on a theoretical model of the internal structure of Titan, the satellite of Saturn. All the calculations were performed within the SK theory of dense matter. The…

Astrophysics · Physics 2011-02-19 G. Pavicic , V. Celebonovic

It is generally accepted that the four major (Galilean) satellites formed out of the gas disk that accompanied Jupiter's formation. However, understanding the specifics of the formation process is challenging as both small particles…

Earth and Planetary Astrophysics · Physics 2020-01-08 Yuhito Shibaike , Chris W. Ormel , Shigeru Ida , Satoshi Okuzumi , Takanori Sasaki

In this article, we investigate the mathematical part of De Sitter's theory on the Galilean satellites, and further extend this theory by showing the existence of some quasi-periodic librating orbits by applications of KAM theorems. After…

Dynamical Systems · Mathematics 2015-09-01 Henk Broer , Lei Zhao

A better knowledge of Jovian satellites' origins will bring light on the environment that surrounded Jupiter during its formation and can help us to understand the characteristics of this unique satellite system. We developed a…

Earth and Planetary Astrophysics · Physics 2015-12-09 Yamila Miguel , Shigeru Ida

Using the helium abundance measured by Galileo in the atmosphere of Jupiter and interior models reproducing the observed external gravitational field, we derive new constraints on the composition and structure of the planet. We conclude…

Astrophysics · Physics 2009-10-30 Tristan Guillot , Daniel Gautier , William B. Hubbard

Irregular satellites of Jupiter with their highly eccentric, inclined and distant orbits suggest that their capture took place just before the giant planet migration. We aim to improve our understanding of the surface composition of…

Earth and Planetary Astrophysics · Physics 2017-12-29 M. Bhatt , V. Reddy , K. Schindler , E. Cloutis , A. Bhardwaj , L. L. Corre , P. Mann

It has been proposed that the enrichment in noble gases found by Galileo in Jupiter's atmosphere can be explained by their delivery inside cold planetesimals. We propose instead that this is a sign that the planet formed in a chemically…

Astrophysics · Physics 2007-05-23 Tristan Guillot , Ricardo Hueso

The microwave radiometer aboard the Juno spacecraft provided a measurement of the water abundance found to range between 1 and 5.1 times the protosolar abundance of oxygen in the near-equatorial region of Jupiter. Here, we aim to combine…

Earth and Planetary Astrophysics · Physics 2021-09-29 Olivier Mousis , Jonathan I. Lunine , Artyom Aguichine

Electron impact ionization is critical in producing the ionospheres on many planetary bodies and, as discussed here, is critical for interpreting spacecraft and telescopic observations of the tenuous atmospheres of the icy Galilean…

Earth and Planetary Astrophysics · Physics 2023-03-22 Shane R. Carberry Mogan , Robert E. Johnson , Audrey Vorburger , Lorenz Roth

Tenuous dust clouds of Jupiter's Galilean moons Io, Europa, Ganymede and Callisto have been detected with the in-situ dust detector on board the Galileo spacecraft. The majority of the dust particles have been sensed at altitudes below five…

Astrophysics · Physics 2007-05-23 Harald~Krüger , Alexander V. Krivov , Miodrag Sremčević , Eberhard Grün

Preliminary results of a theoretical determination of the basic parameters of the internal structure of the five Uranian satellies are presented.

Astrophysics · Physics 2007-05-23 V. Celebonovic

As an exoplanet transits its host star, some of the light from the star is absorbed by the atoms and molecules in the planet's atmosphere, causing the planet to seem bigger; plotting the planet's observed size as a function of the…

Using the clathrate hydrates trapping theory, we discuss the enrichments in volatiles in the atmosphere of Jupiter measured by the \textit{Galileo} probe in the framework of new extended core-accretion planet formation models including…

Astrophysics · Physics 2009-11-10 Yann Alibert , Olivier Mousis , Willy Benz

In this paper we investigate the possibility of measuring the post-Newtonian general relativistic gravitomagnetic Lense-Thirring effect in the Jovian system of its Galilean satellites Io, Europa, Ganymede and Callisto in view of recent…

General Relativity and Quantum Cosmology · Physics 2013-10-24 Lorenzo Iorio , Valery Lainey

The satellites of Jupiter are thought to form in a circumplanetary disc. Here we address their formation and orbital evolution with a population synthesis approach, by varying the dust-to-gas ratio, the disc dispersal timescale and the dust…

Earth and Planetary Astrophysics · Physics 2018-08-24 M. Cilibrasi , J. Szulágyi , L. Mayer , J. Drażkowska , Y. Miguel , P. Inderbitzi

The origins of the Galilean satellites - namely Io, Europa, Ganymede, and Callisto - is not fully understood yet. Here we use N-body numerical simulations to study the formation of Galilean satellites in a gaseous circumplanetary disk…

Earth and Planetary Astrophysics · Physics 2021-04-09 Gustavo Madeira , André Izidoro , Silvia M. Giuliatti Winter

The Galileo spacecraft was orbiting Jupiter between Dec 1995 and Sep 2003. The Galileo dust detector monitored the jovian dust environment between about 2 and 370 R_J (jovian radius R_J = 71492 km). We present data from the Galileo dust…

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