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Symplectic Field Theory of the Galilean Covariant Scalar and Spinor Representations

arXiv:1909.13737 · doi:10.15407/ujpe64.8.719

Abstract

Exploring the concept of the extended Galilei group , a representation for the symplectic quantum mechanics in the manifold of , written in the light-cone of a five-dimensional De Sitter space-time, is derived consistently with the method of the Wigner function. A Hilbert space is constructed endowed with a simplectic structure, studying unitary operators describing rotations and translations, whose generators satisfy the Lie algebra of . This representation gives rise to the Schrödinger (Klein-Gordon-like) equation for the wave functions in phase-space, such that the dependent variables have the position and linear momentum contents. Wave functions are associated with the Wigner function through the Moyal product, such that the wave functions represent a quasi-amplitude of probability. We construct the Pauli-Schrödinger (Dirac-like) equation in phase-space in its explicitly covariant form. Finally, we show the equivalence between the five dimensional formalism of phase-space with the usual formalism, proposing a solution that recover the non-covariant form of the Pauli-Schrödinger equation in phase-space.

6 pages, 2 figures, presented in New Trends in High Energy Physics, 2019, Odessa, Ukraine

Symplectic Field Theory of the Galilean Covariant Scalar and Spinor Representations · wovepaper