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Nonlinear pulse interaction in microresonator slow-light waveguides

机译:微谐振器慢光波导中的非线性脉冲相互作用

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摘要

Using the constraint of fixed pulse distortion, three slow-light waveguide architectures [coupled-resonator optical waveguide, side-coupled integrated spaced sequence of resonators (SCISSOR), and ring enhanced Mach-Zehnder interferometer (REMZI)] are studied for linear delay-bandwidth product, nonlinear phase shift, and nonlinear pulse. interaction; pulse to pulse interaction is a limiting factor on the bit rate. For the same number of stages the REMZI architecture has the highest delay-bandwidth product and the best nonlinear sensitivity, but the SCISSOR architecture has the weakest nonlinear pulse interaction. We further define a phase efficiency factor, which represents the fraction of the total filter phase that contributes to the delay-bandwidth product. We also show that resonator loss reduces the nonlinear sensitivity and the delay-bandwidth product in the nonlinear regime. (C) 2008 Optical Society of America
机译:利用固定脉冲失真的约束,研究了三种慢光波导架构[耦合谐振器光波导,谐振器的侧耦合积分间隔序列(SCISSOR)和环形增强型马赫曾德尔干涉仪(REMZI)],以解决线性延迟问题。带宽积,非线性相移和非线性脉冲。相互作用;脉冲之间的相互作用是限制比特率的因素。对于相同的级数,REMZI体系结构具有最高的延迟带宽乘积和最佳的非线性灵敏度,而SCISSOR体系结构具有最弱的非线性脉冲相互作用。我们进一步定义了一个相位效率因子,该因子表示总滤波器相位中占延迟带宽乘积的部分。我们还表明,谐振器损耗会降低非线性范围内的非线性灵敏度和延迟带宽乘积。 (C)2008年美国眼镜学会

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