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通过活性磁光杂质控制光的传播。

Taming the flow of light via active magneto-optical impurities.

作者信息

Ramezani Hamidreza, Lin Zin, Kalish Samuel, Kottos Tsampikos, Kovanis Vassilios, Vitebskiy Ilya

机构信息

Department of Physics, Wesleyan University, Middletown, CT 06459, USA.

出版信息

Opt Express. 2012 Nov 19;20(24):26200-7. doi: 10.1364/OE.20.026200.

Abstract

We demonstrate that the interplay of a magneto-optical layer sandwiched between two judiciously balanced gain and loss layers which are both birefringent with misaligned in-plane anisotropy, induces unidirectional electromagnetic modes. Embedding one such optically active non-reciprocal unit between a pair of birefringent Bragg reflectors, results in an exceptionally strong asymmetry in light transmission. Remarkably, such asymmetry persists regardless of the incident light polarization. This photonic architecture may be used as the building block for chip-scale non-reciprocal devices such as optical isolators and circulators.

摘要

我们证明,夹在两个经过审慎平衡的增益层和损耗层之间的磁光层的相互作用会诱导单向电磁模式,这两个增益层和损耗层都是双折射的,且面内各向异性未对齐。在一对双折射布拉格反射器之间嵌入一个这样的光学活性非互易单元,会导致光传输出现异常强烈的不对称性。值得注意的是,无论入射光的偏振如何,这种不对称性都会持续存在。这种光子结构可作为芯片级非互易器件(如光隔离器和环行器)的构建模块。

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