Scattering Amplitudes and Resonant Processes in QED with Chiral Chemical Potential and Chiral Magnetic Conductivity

Abstract

The QED scattering amplitude in a chiral medium characterized by a constant chiral chemical potential μ5 and chiral magnetic conductivity b0 is analyzed. We show the emergence of the resonant behavior in 1 2, 2 2, and 2 3 processes. We compute the rates of paradigm 1 2 processes that determine the widths of quasi-stationary fermion and photon states in the medium. We elucidate the origin of these resonances, the conditions of their emergence, and the physical principles of their regularization.

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