首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Compact four-port circulator based on 2D photonic crystals with a 90 degrees rotation of the light wave for photonic integrated circuits applications
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Compact four-port circulator based on 2D photonic crystals with a 90 degrees rotation of the light wave for photonic integrated circuits applications

机译:基于2D光子晶体的紧凑型四端口循环器,具有90度旋转光波的光子集成电路应用

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摘要

A four-port optical circulator based on two-dimensional square lattice photonic crystals is reported. It is simple besides the brief framework. The crystalline geometrical structure of the circulator makes 90 degrees non-reciprocal transmissions of electromagnetic waves with low insertion loss and high levels of isolation by the diligence of magneto-optic crystals. The structure is novel because it uses a resonant cavity with a simple design. Also, in comparison to prior models, the proposed four-port circulator utilizes a two-dimensional square lattice crystal structure with a cylindrical ferrite section of the pi/4 Faraday angle. The finite element method is used for this anisotropic medium to get the tensor elements in this simulation. The importance of the gyromagnetic properties of ferrite crystals for the non-reciprocal transmission is investigated. Furthermore, the corresponding S-parameters for this circulator are analyzed and reported. Due to the compact size and ease of fabrication, this device can be realized for applications such as splitting and isolation in photonic integrated circuits.
机译:报道了一种基于二维方形晶格光子晶体的四端口光学循环。除了短暂的框架之外很简单。循环器的晶体几何结构使电磁波具有90度,电磁波具有低插入损耗和通过磁光晶体的努力进行高度的隔离。该结构是新颖的,因为它使用具有简单设计的谐振腔。而且,与现有模型相比,所提出的四端口循环器利用二维方形格子晶体结构,其具有PI / 4法拉第角度的圆柱形铁氧体部分。有限元方法用于该各向异性介质以获得该模拟中的张量元件。研究了铁氧体晶体对非互易传输的旋磁性质的重要性。此外,分析并报道了该循环器的相应S参数。由于尺寸紧凑,易于制造,可以实现该装置,用于光子集成电路中的分裂和隔离等应用。

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