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Contact Geometry and Quantum Mechanics

Published 13 Sep 2017 in hep-th, gr-qc, math-ph, math.DG, math.MP, and quant-ph | (1709.04557v2)

Abstract: We present a generally covariant approach to quantum mechanics in which generalized positions, momenta and time variables are treated as coordinates on a fundamental "phase-spacetime." We show that this covariant starting point makes quantization into a purely geometric flatness condition. This makes quantum mechanics purely geometric, and possibly even topological. Our approach is especially useful for time-dependent problems and systems subject to ambiguities in choices of clock or observer. As a byproduct, we give a derivation and generalization of the Wigner functions of standard quantum mechanics.

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