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Nonlinear effects induced by vacuum polarization by a strong electromagnetic field in a weak static electromagnetic field

机译:弱极化电磁场中的强电磁场由真空极化引起的非线性效应

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In the one-loop approximation of quantum electrodynamics, we study the Faraday rotation effect in the propagation of a weak linearly polarized wave through the field of a strong plane electromagnetic wave and also processes induced by a strong wave: the emission of a photon whose energy is an integer multiple of the "strong-wave quantum" and photon absorption with the emission of several photons identical (coherent) to the "strong-wave quanta." The induced processes should occur in a vacuum in a superposition of external fields, namely, the field of a strong plane electromagnetic wave and a static spatially inhomogeneous electromagnetic field. We show that the induced photon emission in the field of a strong electromagnetic wave with circular polarization and in a static inhomogeneous field is equivalent to the merging of two "strong-wave quanta" with the production of one photon and that the induced photon absorption in the same combination of fields is equivalent to the decay (splitting) of a photon into two photons completely identical to the "strong-wave quanta". All these effects are induced by the phenomenon of the vacuum polarization by a strong external time-dependent electromagnetic field. The probabilities of the induced processes are nontrivial nonlinear functions of the squared strength of the time-dependent field also depending on other parameters.
机译:在量子电动力学的单回路逼近中,我们研究了法拉第旋转效应在弱线性极化波通过强平面电磁波场以及强波感应过程中的传播:光子的发射是“强波量子”和光子吸收的整数倍,并且发射出与“强波量子”相同(相干)的几个光子。感应过程应在真空中以外部场(即强平面电磁波场和静态空间不均匀电磁场)的叠加形式发生。我们表明,在具有圆极化的强电磁波场中和在静态不均匀场中,感应光子发射等效于两个“强波量子”与一个光子的产生合并,并且感应光子在相同的场组合等效于将一个光子衰减(分裂)为与“强波量子”完全相同的两个光子。所有这些影响都是由强的随时间变化的外部电磁场引起的真空极化现象引起的。诱导过程的概率是依赖于时间的场的平方强度的非平凡非线性函数,也取决于其他参数。

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