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March 18, 20260 citationsOpen Access

A Gauge-Invariant Stueckelberg Extension of Yang–Mills Theory

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OAOm Arora

Key Points

  • This study explores a non-Abelian Yang–Mills theory with a Stueckelberg field to examine mass generation while maintaining gauge invariance.
  • Constructed a gauge-fixed quantum action using the BRST formalism in a covariant gauge.
  • Derived perturbative Feynman rules, including vertices from the Stueckelberg sector.
  • Analyzed one-loop renormalization using dimensional regularization and the $ar{MS}$ scheme.
  • Computed loop contributions to gluon self-energy and verified consistency relations.
  • The one-loop beta function matches that of ordinary Yang–Mills theory, confirming asymptotic freedom.
  • Stueckelberg scalar loops affect only longitudinal structures, leaving transverse divergences unchanged.
  • The framework allows for systematic exploration of mass generation in non-Abelian gauge theories.

Abstract

We investigate a non-Abelian Yang--Mills theory coupled to a group-valued Stueckelberg field that provides a gauge-invariant mechanism for introducing a mass scale while preserving local gauge symmetry. Using the BRST formalism in a covariant R_ gauge, we construct the gauge-fixed quantum action and derive the complete set of perturbative Feynman rules, including the vertices generated by the non-polynomial Stueckelberg sector. The one-loop renormalization structure is analyzed within dimensional regularization and the MS scheme. We compute explicitly the individual loop contributions to the gluon self-energy, demonstrate that Stueckelberg scalar loops contribute only to the longitudinal tensor structure and therefore do not modify the transverse ultraviolet divergence, and verify that a Slavnov--Taylor consistency relation among renormalization constants is satisfied at one loop. The resulting one-loop beta function coincides with that of ordinary Yang--Mills theory, establishing that the two theories share the same ultraviolet universality class and that asymptotic freedom is preserved. While non-perturbative phenomena such as confinement and the Yang--Mills mass gap lie beyond the scope of the present analysis, the framework provides a controlled perturbative setting in which gauge-invariant mass generation in non-Abelian gauge theories can be systematically explored.

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Cite This Study

Om Arora (2026) studied this question.

synapsesocial.com/papers/69ba43f74e9516ffd37a5bb1https://doi.org/10.5281/zenodo.19057338
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Gauge Symmetry Beyond Perturbation Theory: BRST and Anti-BRST Structure, Background Fields, and Infrared Dynamics of Yang–Mills Theory2026
  2. 2Mass Gap Generation in Non-Local Yang–Mills Theory with Entire-Function Regularization2026
  3. 3The hidden symmetries of Yang-Mills theory in (3 + 1)-dimensions2025
  4. 4A Complete Construction of Four-Dimensional Yang–Mills Theory with Mass Gap2026
  5. 5Yang-Mills Existence and Mass Gap: A Construction via Extended Lattice Actions2026