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Equations of Motion of Spinning Relativistic Particle in External Fields

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arxiv gr-qc/9710098 v1 pith:QIBYYGTZ submitted 1997-10-21 gr-qc hep-phphysics.acc-ph

classification gr-qchep-phphysics.acc-ph
keywords particlespinexternalrelativisticequationsgravitationalmotionorder
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We consider the motion of a spinning relativistic particle in external electromagnetic and gravitational fields, to first order in the external field, but to an arbitrary order in spin. The correct account for the spin influence on the particle trajectory is obtained with the noncovariant description of spin. Concrete calculations are performed up to second order in spin included. A simple derivation is presented for the gravitational spin-orbit and spin-spin interactions of a relativistic particle. We discuss the gravimagnetic moment (GM), a specific spin effect in general relativity. It is demonstrated that for the Kerr black hole the gravimagnetic ratio, i.e., the coefficient at the GM, equals to unity (as well as for the charged Kerr hole the gyromagnetic ratio equals to two). The equations of motion obtained for relativistic spinning particle in external gravitational field differ essentially from the Papapetrou equations.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Universality in Relativistic Spinning Particle Models

    hep-th 2026-03 unverdicted novelty 6.0 of 10

    Four relativistic spinning particle models (vector oscillator, spinor oscillator, spherical top, massive twistor) describe identical physics in free and interacting theories within the spin-magnitude-preserving sector.

  2. Neutrino spin oscillations near a black hole

    hep-ph 2025-02 conditional novelty 5.0 of 10

    Neutrinos scattered by a black hole's accretion disk undergo non-negligible spin flip from the toroidal magnetic field alone, contrary to earlier studies.

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