论文标题
强场QED过程的电子自旋和光子极化分辨的概率
Electron spin- and photon polarization-resolved probabilities of strong-field QED processes
论文作者
论文摘要
在Ultrastrong激光场中,提供了完全极化分辨的概率的推导,用于高能光子发射和电子峰值生产。在电子自旋和传入和传出颗粒的光子自旋和光子极化中分析的概率是必不可少的,对于在超大性激光束相互作用的非线性QED过程中,旨在研究非线性QED过程中的极性QED过程的Qed Monte carlo和Qed颗粒,并涉及多个元素的元素相互作用,并涉及多个extress externer whocters涉及的Qucters ofertion whosect涉及的Q光子发射和配对的过程。 Baier和Katkov引入的量子操作员方法用于计算准经典方法和局部常数近似中的概率。超层次主义制度的概率以紧凑的形式给出,适合描述在强构构的强激光场中的极化效应,从而非常适合应用程序。
A derivation of fully polarization-resolved probabilities is provided for high-energy photon emission and electron-positron pair production in ultrastrong laser fields. The probabilities resolved in both electron spin and photon polarization of incoming and outgoing particles are indispensable for developing QED Monte Carlo and QED-Particle-in-Cell codes, aimed at the investigation of polarization effects in nonlinear QED processes in ultraintense laser-plasma and laser-electron beam interactions, and other nonlinear QED processes in external ultrastrong fields, which involve multiple elementary processes of a photon emission and pair production. The quantum operator method introduced by Baier and Katkov is employed for the calculation of probabilities within the quasiclassical approach and the local constant field approximation. The probabilities for the ultrarelativistic regime are given in a compact form and are suitable to describe polarization effects in strong laser fields of arbitrary configuration, rendering them very well suited for applications.