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March 13, 2026International Journal of Scientific Development and Research0 citationsOpen Access

Generalized BRST transformation for relating Proca and Stukelberg theory

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GPGhanshyam PalASA. K. Singh

Key Points

  • This research aims to explore the relationship between generating functionals of constrained systems using BRST transformations.
  • Applied finite field-dependent BRST transformation to two models
  • Carried out explicit computations for Proca and Stueckelberg theories
  • Derived generating functional for Proca theory from Stueckelberg formulation
  • Established a correspondence between first-class and second-class constrained systems
  • Demonstrated the utility of FFBRST transformations in quantization
  • Showed formal equivalence between different approaches for massive spin-1 fields

Abstract

This work explores the relationship between the generating functionals associated with first-class and second-class constrained systems through the application of the finite field-dependent BRST (FFBRST) transformation. We rigorously demonstrate this correspondence by carrying out explicit computations within the framework of two distinct models. In particular, we derive the generating functional corresponding to the Proca theory by systematically transforming the generating functional of the Stueckelberg formulation for a massive spin-1 vector field via the FFBRST approach. This analysis underlines the utility of FFBRST transformations in establishing a formal equivalence between different quantization schemes.

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Cite This Study

Pal et al. (2026) studied this question.

synapsesocial.com/papers/69b3ace502a1e69014ccf083https://doi.org/10.56975/ijsdr.v11i3.307634
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