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Hybrid integrated optical isolators and circulators

机译:混合集成式光隔离器和循环器

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摘要

Magneto-optics is an area that is uniquely enabling for the production of non-reciprocal components such as optical isolators and circulators. The concepts behind the non-reciprocity include nonreciprocal polarization rotation (Faraday rotation) and nonreciprocal phase shift. A magneto-optic material that is magnetized in the direction of propagation of light acts as a Faraday rotator. An asymmetric magneto-optic waveguide that is magnetized perpendicular to the propagation direction acts as a nonreciprocal phase shifter. Both effects can be utilized to realize nonreciprocal devices. Today, commercial isolators and circulators are strictly bulk components, and as such they constitute the only type of optical component that is not available in integrated form. However, the technology for integrated nonreciprocal devices has been maturing and is expected to have a considerable impact in the communication industry by enabling the integration of complete optical subsystems. We report on the development of integrated optical isolators and circulators that consist of polymer-based planar interferometers with inserted thin films of cerium-substituted Yttrium Iron Garnet (Ce-YIG) for efficient Faraday rotation, and thin films of LiNbO_3 for wave-retarders that enable polarization-independent operation.
机译:磁光是一个独特的领域,能够生产诸如光学隔离器和循环器之类的不可逆组件。不可逆性背后的概念包括不可逆极化旋转(法拉第旋转)和不可逆相移。在光的传播方向上被磁化的磁光材料充当法拉第旋转器。垂直于传播方向磁化的非对称磁光波导用作不可逆移相器。两种效果均可用于实现不可逆的设备。如今,商用隔离器和循环器严格来说是散装组件,因此它们构成了唯一无法以集成形式提供的光学组件。但是,用于集成不可逆设备的技术已经日趋成熟,并有望通过集成完整的光学子系统来对通信行业产生重大影响。我们报告了集成光学隔离器和循环器的发展情况,该光学隔离器和循环器由基于聚合物的平面干涉仪组成,其中插入了铈取代的钇铁石榴石(Ce-YIG)薄膜以有效地进行法拉第旋转,而LiNbO_3薄膜用于波长延迟器,启用与偏振无关的操作。

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