The general theory of gauge fields is used to develop a theory of electrodynamics in which the fundamental structure is non-Abelian and in which the internal gauge field symmetry is O(3), based on the existence of circular polarization and the third Stokes parameter. The theory is used to provide an explanation for the Sagnac effect with platform at rest and in motion. The Sagnac formula is obtained by considering the platform in motion to be a gauge transformation. The topological phases can be described straightforwardly with non Abelian electrodynamics, which produces a novel magnetic field component for all types of radiation, a component which is proportional to the third Stokes parameter. The theory provides a natural explanation for the inverse Faraday effect without phenomenology.

A general theory of non-abelian electrodynamics

LEPORINI, DINO;
1999-01-01

Abstract

The general theory of gauge fields is used to develop a theory of electrodynamics in which the fundamental structure is non-Abelian and in which the internal gauge field symmetry is O(3), based on the existence of circular polarization and the third Stokes parameter. The theory is used to provide an explanation for the Sagnac effect with platform at rest and in motion. The Sagnac formula is obtained by considering the platform in motion to be a gauge transformation. The topological phases can be described straightforwardly with non Abelian electrodynamics, which produces a novel magnetic field component for all types of radiation, a component which is proportional to the third Stokes parameter. The theory provides a natural explanation for the inverse Faraday effect without phenomenology.
1999
Anastasovski, Pk; Bearden, Te; Ciubotariu, C; Coffey, Wt; Crowell, Lb; Evans, Gj; Evans, Mw; Flower, R; Jeffers, S; Labounsky, A; Leporini, Dino; Lehnert, B; Meszaros, M; Moscicki, Jk; Molnar, Pr; Munera, H; Recami, E; Roscoe, D; Roy, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/169070
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