论文标题
QED的进步和强烈的背景字段
Advances in QED with intense background fields
论文作者
论文摘要
将越来越强的激光器和能量粒子梁结合在一起的即将到来的实验将访问非线性,相对论,量子效应的新方案。这种提高的实验能力在激烈的背景领域中驱动了QED的实质性进展。我们在这里回顾了过去十年中的进步,重点是理论和现象学。一如既往地达到较高的强度,有必要在散射颗粒数量和环的数量中以较高的阶数考虑过程,并考虑到非扰动物理(例如schwinger效应),并具有极高的强度,并且需要重新启动循环扩展。除了增加强度外,实验还将达到更高的准确性,这些改进也与理论中的发展相匹配,例如近似框架,有限尺寸效应的描述以及所分析的物理现象范围。实质性进展的主题包括:辐射反应,自旋和极化,非线性量子真空效应以及与其他领域的连接,包括标准模型以外的物理。
Upcoming and planned experiments combining increasingly intense lasers and energetic particle beams will access new regimes of nonlinear, relativistic, quantum effects. This improved experimental capability has driven substantial progress in QED in intense background fields. We review here the advances made during the last decade, with a focus on theory and phenomenology. As ever higher intensities are reached, it becomes necessary to consider processes at higher orders in both the number of scattered particles and the number of loops, and to account for non-perturbative physics (e.g. the Schwinger effect), with extreme intensities requiring resummation of the loop expansion. In addition to increased intensity, experiments will reach higher accuracy, and these improvements are being matched by developments in theory such as in approximation frameworks, the description of finite-size effects, and the range of physical phenomena analysed. Topics on which there has been substantial progress include: radiation reaction, spin and polarisation, nonlinear quantum vacuum effects and connections to other fields including physics beyond the Standard Model.