法拉第效应
法拉第旋转器
物理
循环器
光隔离器
Weyl半金属
磁场
旋光
凝聚态物理
光电子学
光学
半金属
光纤
带隙
量子力学
作者
Tianming Li,Chengping Yin,Feng Wu
标识
DOI:10.1016/j.physleta.2022.128103
摘要
Faraday rotation effect possesses a broad range of applications in the design of non-reciprocal optical devices, such as optical isolators and circulators. By introducing conventional magneto-optical materials into resonant micro-structures, the Faraday rotation effect can be greatly enhanced. Nevertheless, the realization of giant Faraday rotation in micro-structure requires a strong external magnetic field. In this letter, we propose a heterojunction structure composed of a one-dimensional photonic crystal and a Weyl semimetal (WSM) layer to realize giant Faraday rotation without requiring an external magnetic field. Assisted by the optical Tamm state supported by the heterojunction structure, the Faraday rotation angle is greatly enhanced to −40.4 degrees and the transmittance still reaches 57.4%. This giant Faraday rotation effect in simple multilayer structure would possess potential applications in the design of compact non-reciprocal optical devices, such as optical isolators and circulators.
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