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      Symplectic quantization I: dynamics of quantum fluctuations in a relativistic field theory

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          Abstract

          We propose here a new symplectic quantization scheme, where quantum fluctuations of a scalar field theory stem from two main assumptions: relativistic invariance and equiprobability of the field configurations with identical value of the action. In this approach the fictitious time of stochastic quantization becomes a genuine additional time variable, with respect to the coordinate time of relativity. This proper time is associated to a symplectic evolution in the action space, which allows one to investigate not only asymptotic, i.e. equilibrium, properties of the theory, but also its non-equilibrium transient evolution. In this paper, which is the first one in a series of two, we introduce a formalism which will be applied to general relativity in the companion work "Symplectic quantization II".

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          Author and article information

          Journal
          06 January 2021
          Article
          2101.02125
          e998df38-6886-4b2e-b511-2f0e3310268a

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          6 pages
          gr-qc cond-mat.stat-mech

          Condensed matter,General relativity & Quantum cosmology
          Condensed matter, General relativity & Quantum cosmology

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