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April 27, 2026Brazilian Journal of Physics0 citationsOpen Access

Remarks on Constraint Analysis and Vacuum Persistence Amplitudes in Gauge Theories

ANA. A. Nogueira

Key Points

  • The aim is to analyze the covariant quantum dynamics in gauge theories and derive the vacuum persistence amplitude for specific electrodynamics models.
  • Provided a self-contained derivation of constrained quantization principles.
  • Connected Dirac's constraint formalism with the quantum action principle and transition amplitude structures.
  • Applied the concepts to Stüeckelberg quantum electrodynamics focusing on the Meissner effect.
  • Presented a compact derivation of vacuum persistence amplitudes for Stüeckelberg quantum electrodynamics.
  • Demonstrated the interaction between matter and radiation through these derived amplitudes.

Abstract

In this work, we provide a general analysis of the subtleties of covariant quantum dynamics governing the interaction between matter and radiation, and present arguments that are useful for the quantization of arbitrary gauge models. Although the basic ingredients of constrained quantization are well established, we provide a compact and self-contained derivation that makes explicit the logical bridge between Dirac’s constraint formalism, Schwinger’s quantum action principle, and the Faddeev–Senjanovic construction of the transition amplitude and its functional measure structures, in a manner directly applicable to arbitrary electrodynamics models. As a direct application, not yet properly explored in the literature, we present the vacuum persistence amplitude of Stüeckelberg quantum electrodynamics in the regime where the Meissner effect arises.

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Cite This Study

A. A. Nogueira (2026) studied this question.

synapsesocial.com/papers/69eefcaefede9185760d3a65https://doi.org/10.1007/s13538-026-02074-y
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