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AbstractAbstract
[en] First- and second-order Galileo-invariant systems of differential equations which describe the motion of nonrelativistic particles of arbitrary spin are derived. The equations can be derived from a Lagrangian and describe the dipole, quadrupole, and spin-orbit interaction of the particles with an external field; these interactions have traditionally been regarded as purely relativistic effects. The problem of the motion of a nonrelativistic particle of arbitrary spin in a homogeneous magnetic field is solved exactly on the basis of the obtained equations. The generators of all classes of irreducible representations of the Galileo group are found
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Source
Cover-to-cover translation of Fizika Ehlementarnykh Chastits i Atomnogo Yadra (USSR).
Record Type
Journal Article
Journal
Soviet Journal of Particles and Nuclei; ISSN 0090-4759; ; v. 12(5); p. 465-488
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