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Relativistic Effects in the Rotation of Jupiter’s Inner Satellites


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Archinal B.A., Acton C.H., A’Hearn M.F., Conrad A., Consolmagno G.J., Duxbury T., Hestroffer D., Hilton J. L., Kirk R. L., Klioner S. A., McCarthy D., Meech K., Oberst J., Ping J., Seidelmann P. K., Tholen D. J., Thomas P. C., Williams I. P. (2018) Report of the IAU Working Group on Cartographic Coordinates and Rotational Elements: 2015, Celest. Mech. Dyn. Astron., Vol. 130, No. 22, 21-46; (https://doi.org/10.1007/s10569-017-9805-5).Search in Google Scholar

Biscani F., Carloni S. (2015) A first-order secular theory for the post-Newtonian two-body problem with spin – II. A complete solution for the angular coordinates in the restricted case, Monthly Notices of the Royal Astronomical Society, Vol. 446, No. 3, 3062-3077 (https://doi.org/10.1093/mnras/stu2258).Search in Google Scholar

Brumberg V.A. (1972) Relativistic Celestial Mechanics, Moskva: Nauka, Moscow (in Russian).Search in Google Scholar

Brumberg V.A., Bretagnon P. (2000) Kinematical Relativistic Corrections for Earth’s Rotation Parameters, Proc. IAU Colloquium 180, eds. K. Johnston, D. McCarthy, B. Luzum and G. Kaplan, U.S. Naval Observatory, 293-302.Search in Google Scholar

De Sitter W. (1916) On Einstein’s theory of Gravitation and its Astronomical Consequences, Monthly Notices of the Royal Astronomical Society, Vol. 76, No. 9, 699-728; (https://doi.org/10.1093/mnras/76.9.699).Search in Google Scholar

Eroshkin G.I., Pashkevich V.V. (2007) Geodetic rotation of the solar system bodies, Artificial Satellites, Journal of Planetary Geodesy, Vol. 42, No. 1, 59-70.Search in Google Scholar

Eroshkin G.I., Pashkevich V.V. (2009) On the geodetic rotation of the major planets, the Moon and the Sun, Artificial Satellites, Journal of Planetary Geodesy, Vol. 44, No. 2, 43-52.Search in Google Scholar

Folkner W.F., Williams J.G., Boggs D.H., Park R.S., and Kuchynka P. (2014) The Planetary and Lunar Ephemerides DE430 and DE431, IPN Progress Report 42-196, February 15, 2014.Search in Google Scholar

Fukushima T. (1991) Geodesic Nutation, Astronomy and Astrophysics, Vol. 244, No.1, L11-L12.Search in Google Scholar

Giorgini J.D., Yeomans D.K., Chamberlin A.B., Chodas P.W., Jacobson R.A., Keesey M.S., Lieske J.H., Ostro S.J., Standish E.M., Wimberly R.N. (1996) “JPL’s On-Line Solar System Data Service”, Bulletin of the American Astronomical Society, Vol. 28, No. 3, 1158.Search in Google Scholar

Ma C., Arias E.F., Eubanks T.M., Fey A.L., Gontier A.-M., Jacobs C.S., Sovers O.J., Archinal B.A., Charlot P. (1998) The international celestial reference frame as realized by very long baseline interferometry, Astron. J., Vol. 116, No. 1, 516–546.Search in Google Scholar

Melnikov A., Pashkevich V., Vershkov A., Karelin G. (2020) Chaos and relativistic effects in the rotational dynamics of minor planetary satellites, Proc. Journées 2019: Astrometry, Earth Rotation and Reference systems in the Gaia era, Paris, France 2019; (https://syrte.obspm.fr/astro/journees2019/FILES/MelnikovPashkevich.pdf).Search in Google Scholar

Pashkevich V.V. (2016) New high-precision values of the geodetic rotation of the major planets, Pluto, the Moon and the Sun, Artificial Satellites, Journal of Planetary Geodesy, Vol. 51, No. 2, 61-73; (https://doi.org/10.1515/arsa-2016-0006).Search in Google Scholar

Pashkevich V.V., Vershkov A.N. (2019) New High-Precision Values of the Geodetic Rotation of the Mars Satellites System, Major Planets, Pluto, the Moon and the Sun, Artificial Satellites, Journal of Planetary Geodesy, Vol. 54, No. 2, 31-42; (https://doi.org/10.2478/arsa-2019-0004).Search in Google Scholar

Smart W.M. (1953) Celestial Mechanics, Longmans, Green and Co, London – New York – Toronto.Search in Google Scholar

eISSN:
2083-6104
Language:
English
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Journal Subjects:
Geosciences, other