2024/11/03 by Franco Strocchi, Strocchi, Franco
Engineering · Physics and Astronomy · #81/99 #81T10 #81T13 #FOS: Physical sciences #Geophysics and Sensor Technology #High Energy Physics - Theory (hep-th) #History and Philosophy of Physics (physics.hist-ph) #Mathematical Physics (math-ph) #Relativity and Gravitational Theory
paper · pdf · doi:10.48550/arxiv.2411.01607
openalex publication_date 2024/11/03 · openalex created_date 2024/11/14 · openalex updated_date 2026/07/28
This note focuses the problem of motivating the use of gauge symmetries (being the identity on the observables) from general principles, beyond their practical success, starting from global gauge symmetries and then by emphasizing the substantially different role of local gauge symmetries. In the latter case, a deterministic time evolution of the local field algebra, necessary for field quantization, requires a reduction of the full local gauge group \calG to a residual local subgroup \calGr satisfying suitable conditions. A non-trivial residual local gauge group allows for a description/construction of the physical states by using the vacuum representation of a local field algebra, otherwise precluded if \calG is reduced to the identity. Moreover, in the non-abelian case the non-trivial topology of the a residual \calGr defines the (gauge invariant) topological invariants which classify the vacuum structure with important physical effects; furthermore, it provides a general mechanism of spontaneous symmetry breaking without Goldstone bosons.