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Gravitomagnetic effects are characterized by two phenomena: first, the geodetic effect which describes the precession of the spin of a gyroscope in a free orbit around a massive object, second, the Lense-Thirring effect which describes the…

广义相对论与量子宇宙学 · 物理学 2014-01-14 Jackson Levi Said , Joseph Sultana , Kristian Zarb Adami

The two gravitomagnetic effects which influence bodies orbiting around a gravitational source are the geodetic effect and the Lense-Thirring effect. The former describes the precession angle of the axis of a spinning gyroscope while in…

广义相对论与量子宇宙学 · 物理学 2016-10-11 Andrew Finch , Jackson Levi Said

The geodesics of bound spherical orbits i.e. of orbits performing Lense-Thirring precession, are obtained in the case of the $\Lambda$-term within gravito-electromagnetic formalism. It is shown that the presence of the $\Lambda$-term in the…

广义相对论与量子宇宙学 · 物理学 2020-11-18 A. Stepanian , Sh. Khlghatyan , V. G. Gurzadyan

This paper contains a review of the theory and practice of gravitomagnetism, with particular attention to the different and numerous proposals which have been put forward to experimentally or observationally verify its effects. The basics…

广义相对论与量子宇宙学 · 物理学 2010-11-11 Matteo Luca Ruggiero , Angelo Tartaglia

Using the Einstein gravitation theory (EGT), we analyze the Lense Thirring (LT) and the Geodetic effects. In the LT effect the angular orbital momentum L and the perigeo of a particle, orbiting a sphere with mass M and spin J around an axis…

综合物理 · 物理学 2011-03-02 M. Cattani

Newtonian gravity and special relativity combine to produce a gravitomagnetic precession of an orbiting gyroscope that is one fourth as large as predicted by General Relativity. The geodetic effect is the same in both cases.

广义相对论与量子宇宙学 · 物理学 2007-05-23 Stanley L. Robertson

Gravitomagnetism--a motional coupling of matter analogous to the Lorentz force in electromagnetism--has observable consequences for any scenario involving differing mass currents. Examples include gyroscopes located near a rotating massive…

广义相对论与量子宇宙学 · 物理学 2008-11-26 T. W. Murphy , K. Nordtvedt , S. G. Turyshev

An experimental test at the intersection of quantum physics and general relativity is proposed: measurement of relativistic frame dragging and geodetic precession using intrinsic spin of electrons. The behavior of intrinsic spin in…

广义相对论与量子宇宙学 · 物理学 2021-03-02 Pavel Fadeev , Tao Wang , Y. B. Band , Dmitry Budker , Peter W. Graham , Alexander O. Sushkov , Derek F. Jackson Kimball

The main theoretical aspects of gravitomagnetism are reviewed. It is shown that the gravitomagnetic precession of a gyroscope is intimately connected with the special temporal structure around a rotating mass that is revealed by the…

广义相对论与量子宇宙学 · 物理学 2016-12-07 B. Mashhoon , F. Gronwald , H. I. M. Lichtenegger

Recent years have seen increasing efforts to directly measure some aspects of the general relativistic gravitomagnetic interaction in several astronomical scenarios in the solar system. After briefly overviewing the concept of…

广义相对论与量子宇宙学 · 物理学 2011-01-04 L. Iorio , H. I. M. Lichtenegger , M. L. Ruggiero , C. Corda

We study gravito-magnetic effects in the Palatini formalism of f(R) gravity. On using the Kerr-de Sitter metric, which is a solution of f(R) field equations, we calculate the impact of f(R) gravity on the gravito-magnetic precession of an…

广义相对论与量子宇宙学 · 物理学 2009-04-01 Matteo Luca Ruggiero

Gravitomagnetic effects originates from the rotation of the source of the gravitational field and from the rotational features of the observers' frame. In recent years, gravitomagnetism has been tested by means of its impact on the…

广义相对论与量子宇宙学 · 物理学 2013-12-06 Matteo Luca Ruggiero

Beyond the Newtonian approximation, gravitational fields in general relativity can be described using a formalism known as gravitoelectromagnetism. In this formalism a vector potential, the gravitomagnetic potential, arises as a result of…

广义相对论与量子宇宙学 · 物理学 2021-09-02 Viktor T. Toth

Rotation of a body, according to Einstein's theory of general relativity, generates a "force" on other matter; in Newton's gravitational theory only the mass of a body produces a force. This phenomenon, due to currents of mass, is known as…

广义相对论与量子宇宙学 · 物理学 2007-05-23 I. Ciufolini , D. Lucchesi , F. Vespe , F. Chieppa

We review the derivation of the metric for a spinning body of any shape and composition using linearized general relativity theory, and also obtain the same metric using a transformation argument. The latter derivation makes it clear that…

广义相对论与量子宇宙学 · 物理学 2007-05-23 R. J. Adler , A. S. Silbergleit

The assumption that matter charges and currents could generate fields, which are called, by analogy with electromagnetism, gravitoeletric and gravitomagnetic fields, dates from the origins of General Relativity (GR). On the other hand, the…

广义相对论与量子宇宙学 · 物理学 2010-05-07 E. P. Spaniol , V. C. de Andrade

We present a new measurement of the Lense-Thirring effect on the orbits of the geodetic satellites LAGEOS, LAGEOS II and LARES. This secular precession is a general relativity effect produced by the gravitomagnetic field of the Earth…

广义相对论与量子宇宙学 · 物理学 2019-10-07 David M. Lucchesi , Massimo Visco , Roberto Peron , Massimo Bassan , Giuseppe Pucacco , Carmen Pardini , Luciano Anselmo , Carmelo Magnafico

Gravitational lensing by a spinning deflector in translational motion relative to the observer is discussed in the weak field, slow motion approximation. The effect of rotation, which generates an intrinsic gravito-magnetic field, separates…

天体物理学 · 物理学 2009-11-10 M. Sereno

The geodetic and frame-dragging effects are the direct consequences of the spacetime curvature near Earth which can be probed from the Gravity probe B (GP-B) satellite. The satellite result matches quite well with Einstein's general…

高能物理 - 唯象学 · 物理学 2022-11-23 Tanmay Kumar Poddar

The Gravity Probe B (GP-B) satellite experiment will measure the precession of on-board gyroscopes to extraordinary accuracy. Such precessions are predicted by General Relativity (GR), and one component of this precession is the…

综合物理 · 物理学 2010-07-14 Reginald T. Cahill
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