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

机译:非均相电磁场中施韦格效应的相空间分析

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摘要

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.
机译:研究了Schwinger对在空间和时间不均匀的电场中的生产。 重点是在高强度少循环脉冲内的粒子相空间分布上。 在混合的空间 - 动量表示中,量子空间(DHW形式主义)的准确数字解(DHW形式主义)借助于粗晶体化。 另外,根据瞬时对生产和相对论的单粒子动态,基于基于轨迹的模型讨论了载波信封阶段以及旋转场相互作用的签名。 虽然我们的简单半古典单粒子模型无法描述粒子生产过程(量子干扰)的各个方面,但捕获诸如旋转场相互作用的基本特征。

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