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首页> 外文期刊>Annals of Physics >Vacuum birefringence in strong magnetic fields: (I) Photon polarization tensor with all the Landau levels
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Vacuum birefringence in strong magnetic fields: (I) Photon polarization tensor with all the Landau levels

机译:强磁场中的真空双折射:(I)所有朗道能级的光子偏振张量

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Photons propagating in strong magnetic fields are subject to a phenomenon called the "vacuum birefringence" where refractive indices of two physical modes both deviate from unity and are different from each other. We compute the vacuum polarization tensor of a photon in a static and homogeneous magnetic field by utilizing Schwinger's proper-time method, and obtain a series representation as a result of double integrals analytically performed with respect to proper-time variables. The outcome is expressed in terms of an infinite sum of known functions which is plausibly interpreted as summation over all the Landau levels of fermions. Each contribution from infinitely many Landau levels yields a kinematical condition above which the contribution has an imaginary part. This indicates decay of a sufficiently energetic photon into a fermion-antifermion pair with corresponding Landau level indices. Since we do not resort to any approximation, our result is applicable to the calculation of refractive indices in the whole kinematical region of a photon momentum and in any magnitude of the external magnetic field.
机译:在强磁场中传播的光子会受到一种称为“真空双折射”的现象,在该现象中,两种物理模式的折射率既偏离单位,又彼此不同。我们通过利用Schwinger的适当时间方法来计算静态和均匀磁场中光子的真空极化张量,并通过对适当时间变量进行双积分分析而获得级数表示。结果以已知功能的无限总和表示,可以合理地解释为所有Landau费米子水平上的总和。无限多个Landau级别的每个贡献都会产生运动学​​条件,在该条件之上,贡献具有虚部。这表明具有足够高能的光子衰减为具有相应的朗道能级指数的费米-安替米松对。由于我们不求任何近似值,因此我们的结果适用于计算光子动量的整个运动区域以及任何外部磁场强度下的折射率。

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