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Photon emission in strong fields beyond the locally-constant field approximation

机译:超出局部恒定场近似的强田中的光子发射

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We investigate a fundamental nonlinear process of vacuum photon emission in the presence of strong electromagnetic fields going beyond the locally constant field approximation (LCFA), i.e., providing the exact treatment of the spatiotemporal inhomogeneities of the external field. We examine a standing electromagnetic wave formed by high-intensity laser pulses and benchmark the approximate predictions against the results obtained by means of a precise approach evaluating both the tadpole (reducible) and vertex (irreducible) contributions. It is demonstrated that the previously used approximate methods may fail to properly describe the quantitative characteristics of each of the two terms. In the case of the tadpole contribution, the LCFA considerably underestimates the number of photons emitted for sufficiently high frequency of the external field. The vertex term predicts emission of a great number of soft photons whose spectrum is no longer isotropic in contrast to the LCFA results. A notable difference among the photon yields along different spatial directions, which is not captured by the LCFA, represents an important signature for experimental studies of the photon emission process. Since this feature takes place unless the Keldysh parameter is much larger than unity, it can also be used in indirect observation of the Schwinger mechanism.
机译:我们在存在超出局部恒定场近似(LCFA)的强电磁场存在下的真空光子发射的基本非线性过程,即,提供外部场的时空不均匀性的确切治疗。我们检查由高强度激光脉冲形成的站立的电磁波,并通过精确的方法基准测试近似预测,通过精确的方法评估蝌蚪(可还原)和顶点(不可缩短的)贡献。结果证明,先前使用的近似方法可能无法正确描述两个术语中的每一个的定量特征。在蝌蚪贡献的情况下,LCFA显着低估了用于外场的足够高频率的光子的数量。顶点术语预测发射大量软光子,其频谱与LCFA结果相比,其频谱不再各向同性。沿着LCFA未被捕获的不同空间方向的光子产率之间的显着差异是对光子发射过程的实验研究的重要签名。由于此功能发生,除非KELDYSH参数大于UNITE,否则它也可以用于间接观察SCHWINGER机制。

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