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Quantum Processes in Short and Intensive Electromagnetic Fields

机译:短纤维电磁场中的量子过程

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This work provides an overview of our recent results in studying two most important and widely discussed quantum processes: electron-positron pairs production off a probe photon propagating through a polarized short-pulsed electromagnetic (e.g. laser) wave field or generalized Breit-Wheeler process, and a single a photon emission off an electron interacting with the laser pules, so-called non-linear Compton scattering. We show that the probabilities of particle production in both processes are determined by interplay of two dynamical effects, where the first one is related to the shape and duration of the pulse and the second one is non-linear dynamics of the interaction of charged fermions with a strong electromagnetic field. We elaborate suitable expressions for the production probabilities and cross sections, convenient for studying evolution of the plasma in presence of strong electromagnetic fields.
机译:这项工作概述了我们最近的结果,研究了研究两个最重要和广泛讨论的量子工艺:电子 - 正电子对通过偏振短脉冲电磁(例如激光)波场或广义的Breit-Wheeler工艺传播的探针光子, 并且单个与激光脉冲相互作用的光子发射,所谓的非线性康顿散射。 我们表明,这两个过程中粒子产生的概率是通过两个动态效应的相互作用来确定的,其中第一个是与脉冲的形状和持续时间有关,第二个是带电费米氏的相互作用的非线性动力学。 强大的电磁场。 我们详细阐述了生产概率和横截面的合适表达,便于在强大的电磁场存在下研究等离子体的演变。

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