Lorentz-Violating Electrodynamics in Continuous Matter

M. M. Ferreira, P. D. Silva, M. Schreck
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Abstract

We review the propagation of electromagnetic waves in continuous matter in the presence of Lorentz-violating terms. First, we briefly discuss classical electrodynamics with regard to optical properties of a dielectric medium exhibiting the Chiral Magnetic Effect (CME). Such a medium can be modeled by Maxwell-Carroll-Field-Jackiw (MCFJ) theory. Second, we describe the impact of CPT-odd terms of mass dimensions three and five, respectively, on electromagnetic propagation in continuous matter. Birefringence and absorption are analyzed in the scenarios investigated. Our findings provide new insights into the interplay between classical field theory and optical effects in matter.
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连续物质中的违反洛伦兹电动力学
我们回顾了电磁波在连续物质中存在违反洛伦兹项时的传播。首先,我们简要讨论了具有手性磁效应(CME)的介电介质光学性质的经典电动力学。这种介质可以用麦克斯韦-卡罗尔-菲尔-杰基夫(MCFJ)理论来模拟。其次,我们分别描述了质量维度3和5的cpt奇项对连续物质中电磁传播的影响。对所研究场景下的双折射和吸收进行了分析。我们的发现为经典场论与物质光学效应之间的相互作用提供了新的见解。
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