首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >On-chip optical isolator based on unidirectional wavelength-mode conversion waveguide
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On-chip optical isolator based on unidirectional wavelength-mode conversion waveguide

机译:基于单向波长模式转换波导的片上光隔离器

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摘要

Breaking Lorentz reciprocity is one necessary condition of optical isolator design. Unidirectional wavelength-mode conversion will be realized in a time-dependent system through a short operating range. Based on plasma dispersion effect, generate space-asymmetric periodical time-space modulation on silicon waveguide, and non-reciprocal propagation is realized in the waveguide. The designed unidirectional wavelength-mode conversion waveguide demonstrated that in the forward direction, input 1.55 mu m fundamental mode light signal and then output 1.5492 mu m is of 1st-order mode, while in the backward direction, input 1.5492 mu m is of 1st-order mode light signal and then output 1.5484 mu m is of fundamental mode. Based on this non-reciprocal structure, mode conversion waveguide and two-ring resonance filters were designed then, to accomplish on-chip optical isolation. The scale of the designed isolator is 160 mu m x 60 mu m, and the isolation is 21 dB, revealing perfect application potential.
机译:破坏洛伦兹互惠是光隔离器设计的一个必要条件。通过短的操作范围在时间依赖的系统中实现单向波长模式转换。基于等离子体色散效应,在硅波导上产生空间不对称的周期性空间调制,并且在波导中实现了非互易传播。设计的单向波长 - 模式转换波导在向前方向,输入1.55 mu m基波模式光信号然后输出1.5492 mu m是第1阶模式,同时在向后方向,输入1.5492 mu m是1-订购模式光信号然后输出1.5484 mu m是基本模式。基于该非互换结构,设计了模式转换波导和双环谐振滤波器,以实现片上光学隔离。设计隔离器的刻度为160μm×60μm,隔离为21 dB,揭示了完美的应用势。

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