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arxiv: 1708.08920 · v3 · pith:4TNYJVJ5new · submitted 2017-08-29 · 🪐 quant-ph · hep-ph

Phase-space analysis of the Schwinger effect in inhomogeneous electromagnetic fields

classification 🪐 quant-ph hep-ph
keywords productionfieldsinhomogeneousinteractionsmodelpairparticlephase-space
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Schwinger pair production in spatially and temporally inhomogeneous electric and magnetic fields is studied. The focus is on the particle phase-space distribution within a high-intensity few-cycle pulse. Accurate numerical solutions of a quantum kinetic theory (DHW formalism) are presented in momentum space and, with the aid of coarse-graining techniques, in a mixed spatial-momentum representation. Additionally, signatures of the carrier-envelope phase as well as spin-field interactions are discussed on the basis of a trajectory-based model taking into account instantaneous pair production and relativistic single-particle dynamics. Although our simple semi-classical single-particle model cannot describe every aspect of the particle production process (quantum interferences), essential features such as spin-field interactions are captured.

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