Relativistic Dynamics of Point Magnetic Moment
Abstract
The covariant motion of a classical point particle with magnetic moment in the presence of (external) electromagnetic fields is revisited. We are interested in understanding Lorentz force extension involving point particle magnetic moment (Stern-Gerlach force) and how the spin precession dynamics is modified for consistency. We introduce spin as a classical particle property inherent to Poincare\'e symmetry of space-time. We propose a covariant formulation of the magnetic force based on a \lq magnetic\rq\ 4-potential and show how the point particle magnetic moment relates to the Amperian (current loop) and Gilbertian (magnetic monopole) description. We show that covariant spin precession lacks a unique form and discuss connection to anomaly. We consider variational action principle and find that a consistent extension of Lorentz force to include magnetic spin force is not straightforward. We look at non-covariant particle dynamics, and present a short introduction to dynamics of (neutral) particles hit by a laser pulse of arbitrary shape.
Keywords
Cite
@article{arxiv.1712.01825,
title = {Relativistic Dynamics of Point Magnetic Moment},
author = {Johann Rafelski and Martin Formanek and Andrew Steinmetz},
journal= {arXiv preprint arXiv:1712.01825},
year = {2018}
}
Comments
11 pages