Lie Algebroids and the Geometry of Off-shell BRST
arXiv:2101.03974 · doi:10.1016/j.nuclphysb.2021.115553
Abstract
It is well-known that principal bundles and associated bundles underlie the geometric structure of classical gauge field theories. In this paper, we explore the reformulation of gauge theories in terms of Lie algebroids and their associated bundles. This turns out to be a simple but elegant change, mathematically involving a quotient that removes spurious structure. The payoff is that the entire geometric structure involves only vector bundles over space-time, and we emphasize that familiar concepts such as BRST are built into the geometry, rather than appearing as adjunct structure. Thus the formulation of gauge theories in terms of Lie algebroids provides a fully off-shell account of the BRST complex. We expect that this formulation will have appealing impacts on the geometric understanding of quantization and anomalies, as well as entanglement in gauge theories. The formalism covers all gauge theories, and we discuss Yang-Mills theories with matter as well as gravitational theories explicitly.
42 pages, Latex, v2
References in corpus (10)
- Gauge Invariance in Field Theory and Statistical Physics in Operator Formalism
- Generalized complex geometry
- Lie algebroid morphisms, Poisson Sigma Models, and off-shell closed gauge symmetries
- Off-shell nilpotent finite BRST/anti-BRST transformations
- On the intrinsic torsion of spacetime structures
- Lie Algebroid Yang Mills with Matter Fields
- Off-shell Gauge Fields from BRST Quantization
- Formulation of gauge theories on transitive Lie algebroids
- Differential calculus on a Lie algebroid and Poisson manifolds
- Lie Algebroids and Classification Problems in Geometry
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- Asymptotic Higher Spin Symmetries III: Noether Realization in Yang-Mills Theory
- Asymptotic Higher Spin Symmetries II: Noether Realization in Gravity
- Nilpotency Property, Physicality Criteria, Constraints and Standard BRST Algebra: A 4D Field-Theoretic System
- Asymptotic Higher Spin Symmetries IV: Einstein-Yang-Mills Theory