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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Quasiclassical approach to high-energy QED processes in strong laser and atomic fields
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Quasiclassical approach to high-energy QED processes in strong laser and atomic fields

机译:强激光和原子场中高能QED过程的准经典方法

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An approach, based on the use of the quasiclassical Green's function, is developed for investigating high-energy quantum electrodynamical processes in combined strong laser and atomic fields. Employing an operator technique, we derive the Green's function of the Dirac equation in an arbitrary plane wave and a localized potential. Then, we calculate the total cross section of high-energy electron-positron photoproduction in an atomic field of arbitrary charge number (Bethe-Heitler process) in the presence of a strong laser field. It is shown that the laser field substantially modifies the cross section at already available incoming photon energies and laser parameters. This makes it feasible in principle to observe with present technology the analogous effect in a laser field of the Landau-Pomeranchuk-Migdal effect for the Bethe-Heitler process.
机译:开发了一种基于准古典格林函数的方法,用于研究强激光场和原子场相结合的高能量子电动力学过程。利用算子技术,我们在任意平面波和局部势中得出狄拉克方程的格林函数。然后,在存在强激光场的情况下,在任意电荷数的原子场(贝特-海特勒过程)中,我们计算高能电子-正电子光生产的总截面。可以看出,在已经可用的入射光子能量和激光参数下,激光场实质上改变了横截面。这使得原则上可行的是,用本技术在贝斯-海特勒过程中在朗道-波美拉楚克-米格达尔效应的激光场中观察类似效应。

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