1963•Physical ReviewRequires access

Non-Abelian Gauge Fields. Lorentz Gauge Formulation

Julian Schwinger

Open publisher page 112 citations

Abstract

Non-Abelian vector gauge theory is given a first-order Lorentz gauge formulation and then transformed into the radiation gauge. The result agrees with the independently constructed radiation gauge theory. There is a brief discussion of the axial gauge.

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Non-Abelian vector gauge theory is given a first-order Lorentz gauge formulation and then transformed into the radiation gauge. The result agrees with the independently constructed radiation gauge theory. There is a brief discussion of the axial gauge.

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Available abstract

Non-Abelian vector gauge theory is given a first-order Lorentz gauge formulation and then transformed into the radiation gauge. The result agrees with the independently constructed radiation gauge theory. There is a brief discussion of the axial gauge.

Key concepts: Supersymmetric gauge theory, Gauge anomaly, Introduction to gauge theory, Quantum gauge theory, Physics, Hamiltonian lattice gauge theory, Gauge fixing, Lorenz gauge condition

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