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电磁非互易性的几何理论。

Geometrical Theory of Electromagnetic Nonreciprocity.

机构信息

SKLSM, Institute of Semiconductors, Chinese Academy of Sciences, PO Box 912, Beijing 100083, China.

State Key Lab of Fabrication Technologies for Integrated Circuits, Institute of Microelectronics, Chinese Academy of Sciences, Beijing 100029, China.

出版信息

Phys Rev Lett. 2023 May 19;130(20):203801. doi: 10.1103/PhysRevLett.130.203801.

Abstract

Recent advances in electromagnetic nonreciprocity raise the question of how to engineer the nonreciprocal electromagnetic response with geometrical approaches. In this Letter, we examine this problem by introducing generalized electromagnetic continua consisting structured points, which carry extra degrees of freedom over coordinate transformation. We show that general nonreciprocal media have a unique time-varying Riemannian metric structure with local spinning components. It is demonstrated that the nonreciprocity can be alternatively identified as the torsion tensor of a Riemann-Cartan space, which could provide analytic expressions for the magneto-optical effect and the axionic magnetoelectric coupling. Our theory not only gives a deeper insight into the fundamental understanding of electromagnetic nonreciprocity but also provides a practical principle to geometrically design nonreciprocal devices through frame transformation.

摘要

近年来,电磁非互易性的进展提出了如何通过几何方法设计非互易电磁响应的问题。在这封信中,我们通过引入由结构点组成的广义电磁连续体来研究这个问题,这些结构点在坐标变换时具有额外的自由度。我们表明,一般的非互易媒质具有独特的时变黎曼度量结构,具有局部旋转分量。证明了非互易性可以被识别为黎曼-嘉当空间的挠率张量,这可以为磁光效应和轴子磁电耦合提供解析表达式。我们的理论不仅深入了解了电磁非互易性的基本原理,而且还提供了通过框架变换几何设计非互易器件的实用原理。

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