论文标题
关于非线性真空动力学传播波的评论
Remarks on propagating waves in non-linear vacuum electrodynamics
论文作者
论文摘要
在Euler-Heisenberg(EH)非线性电动力学(NLED)Lagrangian模型的光子场中的二次扩展,我们研究了相关的真空属性,在涉及光子探测器的传播的情况下,在存在背景常数和静态磁场的情况下,$ {\ bf bf bf bf bf bf bf bf bf bf bf bd} $。我们使用在软光子近似下使用希尔伯特方法来计算仪表不变,对称和保守的能量量张量(EMT)和角动量张量(AMT),以使用希尔伯特方法进行任意磁场强度。我们讨论了eH拉格朗日语中磁电术语的存在是如何诱导EMT中的非零痕迹的来源,并导致Hilbert或Noether方法计算的EMT之间的差异。从希尔伯特EMT中,我们分析了一些兴趣,例如能量密度,压力,po弹向量和角动量矢量,比较和讨论与改善的Noether方法有关的差异。还研究了磁化真空性能,表明可以针对不同的极化模式定义光子有效磁矩。计算是根据电动力学两个标量不变的衍生物来完成的,因此,向其他NLED Lagrangian扩展很简单。我们讨论了测试磁化,光子压力和有效磁矩的进一步的物理意义和实验策略。
Using the quadratic expansion in the photon fields of Euler-Heisenberg (EH) non-linear electrodynamics (NLED) Lagrangian model we study relevant vacuum properties in a scenario involving the propagation of a photon probe in the presence of a background constant and static magnetic field, ${\bf B_e}$. We compute the gauge invariant, symmetric and conserved energy-momentum tensor (EMT) and angular momentum tensor (AMT) for arbitrary magnetic field strength using the Hilbert method under the soft-photon approximation. We discuss how the presence of magneto-electric terms in the EH Lagrangian is a source of anisotropy, induce the non-zero trace in the EMT and leads to differences between EMT calculated by the Hilbert or Noether method. From the Hilbert EMT we analyze some quantities of interest such as the energy density, pressures, Poynting vector, and angular momentum vector, comparing and discussing the differences with respect to the improved Noether method. The magnetized vacuum properties are also studied showing that a photon effective magnetic moment can be defined for different polarization modes. The calculations are done in terms of derivatives of the two scalar invariants of electrodynamics, hence, extension to other NLED Lagrangian is straightforward. We discuss further physical implications and experimental strategies to test magnetization, photon pressure, and effective magnetic moment.