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High-speed all-optical logic inverter based on stimulated Raman scattering in silicon nanocrystal

机译:基于硅纳米晶体中受激拉曼散射的高速全光逻辑逆变器

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摘要

In this paper, we propose a new device architecture for an all-optical logic inverter (NOT gate), which is cascadable with a similar device. The inverter is based on stimulated Raman scattering in silicon nanocrystal waveguides, which are embedded in a silicon photonic crystal structure. The Raman response function of silicon nanocrystal is evaluated to explore the transfer characteristic of the inverter. A maximum product criterion for the noise margin is taken to analyze the cascadability of the inverter. The time domain response of the inverter, which explores successful inversion operation at 100 Gb/s, is analyzed. Propagation delay of the inverter is on the order of 5 ps, which is less than the delay in most of the electronic logic families as of today. Overall dimension of the device is around 755 mu m x 15 mu m, which ensures integration compatibility with the matured silicon industry. (C) 2015 Optical Society of America
机译:在本文中,我们为全光逻辑反相器(NOT门)提出了一种新的设备架构,该架构可与类似的设备级联。逆变器基于硅纳米晶体波导中受激拉曼散射,硅纳米晶体波导嵌入硅光子晶体结构中。评估了硅纳米晶体的拉曼响应函数,以探索逆变器的传递特性。采用噪声容限的最大乘积准则来分析逆变器的级联性。分析了逆变器的时域响应,该响应探索了100 Gb / s的成功逆变操作。逆变器的传播延迟约为5 ps,小于目前大多数电子逻辑系列的延迟。该器件的整体尺寸约为755μmx15μm,从而确保了与成熟硅产业的集成兼容性。 (C)2015年美国眼镜学会

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