磁光效应是电磁波在被施加准静态磁场物体中传播的种种现象。在这些旋磁材料中,左旋和右旋椭圆偏振光可以以不同速率在介质中传播,导致一些很重要的效应。当光线经过一层磁光物质后,会导致法拉第效应:光线的偏振面可以被旋转,成为法拉第旋光器。当光线被磁光物质反射后,会产生磁光克尔效应(不要与非线性克尔效应混淆)。
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一般而言,磁光效应会造成局域性的时间反转对称破缺(也就是当只有考虑光线的传播而非磁场源的时候)以及劳伦兹互换性的破缺,这些现象是制作光学隔离器等设备的必要条件(光线在其中只往特定方向前进)。
参见
参考资料
- Federal Standard 1037C and from MIL-STD-188
- Lev Davídovich Landau; Evgeniĭ Mikhaĭlovich Lifshit︠s︡. Electrodynamics of continuous media. Pergamon Press. 1960: 82 [3 June 2012]. (原始内容存档于2022-06-09).
- Jackson, John David. Classical electrodynamics 3rd. New York: Wiley. 1998: 6–10. ISBN 978-0471309321.
- Jonsson, Fredrik; Flytzanis, Christos. Optical parametric generation and phase matching in magneto-optic media. Optics Letters. 1 November 1999, 24 (21): 1514. Bibcode:1999OptL...24.1514J. doi:10.1364/OL.24.001514.
- Pershan, P. S. Magneto-Optical Effects. Journal of Applied Physics. 1 January 1967, 38 (3): 1482. Bibcode:1967JAP....38.1482P. doi:10.1063/1.1709678.
- Freiser, M. A survey of magnetooptic effects. IEEE Transactions on Magnetics. 1 June 1968, 4 (2): 152–161. Bibcode:1968ITM.....4..152F. doi:10.1109/TMAG.1968.1066210.
- Broad band magneto-optical spectroscopy (页面存档备份,存于互联网档案馆)
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