Relativistic Effects in the Rotation of Jupiter’s Inner Satellites

IF 0.7 Q4 ASTRONOMY & ASTROPHYSICS Artificial Satellites-Journal of Planetary Geodesy Pub Date : 2020-09-01 DOI:10.2478/arsa-2020-0009
V. Pashkevich, A. Vershkov
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引用次数: 5

Abstract

Abstract The most significant relativistic effects (the geodetic precession and the geodetic nutation, which consist of the effect of the geodetic rotation) in the rotation of Jupiter’s inner satellites were investigated in this research. The calculations of the most essential secular and periodic terms of the geodetic rotation were carried out by the method for studying any bodies of the solar system with long-time ephemeris. As a result, for these Jupiter’s satellites, these terms of their geodetic rotation were first determined in the rotational elements with respect to the International Celestial Reference Frame (ICRF) equator and the equinox of the J2000.0 and in the Euler angles relative to their proper coordinate systems. The study shows that in the solar system there are objects with significant geodetic rotation, due primarily to their proximity to the central body, and not to its mass.
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木星内卫星旋转中的相对论效应
摘要本文研究了木星内卫星自转过程中最显著的相对论效应(大地进动和大地章动,由大地自转效应构成)。大地自转最基本的长期和周期项的计算,是用研究太阳系中任何具有长星历的天体的方法进行的。因此,对于这些木星的卫星来说,它们的大地自转的这些术语首先是在相对于国际天体参考框架(ICRF)赤道和J2000.0的春分的旋转元素中确定的,以及相对于它们的适当坐标系的欧拉角中确定的。这项研究表明,在太阳系中,有一些天体具有显著的大地自转,这主要是由于它们靠近中心天体,而不是因为它的质量。
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