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- W4301086301 abstract "We show that, in contrast to known results in the massive case, a minimally gauged massless Rarita-Schwinger field yields a consistent classical theory, with a generalized fermionic gauge invariance realized as a canonical transformation. To simplify the algebra, we study a two-component left chiral reduction of the massless theory. We formulate the classical theory in both Lagrangian and Hamiltonian form for a general non-Abelian gauging, and analyze the constraints and the Rarita-Schwinger gauge invariance of the action. An explicit wave front calculation for Abelian gauge fields shows that wave-like modes do not propagate with superluminal velocities. An analysis of Rarita-Schwinger spinor scattering from gauge fields shows that adiabatic decoupling fails in the limit of zero gauge field amplitude, invalidating various no-go theorems based on on-shell methods that claim to show the impossibility of gauging Rarita-Schwinger fields. Quantization of Rarita-Schwinger fields, using many formulas from this paper, is taken up in the following paper." @default.
- W4301086301 created "2022-10-04" @default.
- W4301086301 creator A5054449803 @default.
- W4301086301 date "2015-08-13" @default.
- W4301086301 modified "2023-09-25" @default.
- W4301086301 title "Classical Gauged Massless Rarita-Schwinger Fields" @default.
- W4301086301 doi "https://doi.org/10.48550/arxiv.1508.03380" @default.
- W4301086301 hasPublicationYear "2015" @default.
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