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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >All-optical tunable photonic crystal NOR gate based on the nonlinear Kerr effect in a silicon nanocavity
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All-optical tunable photonic crystal NOR gate based on the nonlinear Kerr effect in a silicon nanocavity

机译:硅纳米腔中基于非线性克尔效应的全光可调光子晶体或非门

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摘要

A tunable NOR gate based on the Kerr effect in silicon-rod-based photonic crystals is presented. The proposed gate consists of two-dimensional photonic crystal add-drop filters with wavelength-selective reflector cavities, which are aligned in series with each other. The main feature of this structure is the enhancement of nonlinear phenomena caused by strong light localization in the photonic crystal nanocavities. Because of this feature, the designed NOR gate can control the amount of dropped probe signal light and change the gate output. The operation of the proposed gate is investigated numerically by using the finite-difference time domain method. The results reveal that the power levels of 0, 1, and uncertain states can be changed by appropriate adjustment of the probe signal frequency.
机译:提出了一种基于Kerr效应的可调谐NOR门,该栅基于硅棒的光子晶体中。拟议中的门由具有波长选择反射腔的二维光子晶体分插滤波器组成,它们相互串联排列。这种结构的主要特征是增强了由光子晶体纳米腔中的强光局部化引起的非线性现象。由于此功能,设计的“或非”门可以控制掉落的探测信号光的数量并更改门输出。利用有限差分时域方法,对提出的门的操作进行了数值研究。结果表明,可以通过适当调整探头信号频率来更改0、1和不确定状态的功率电平。

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