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首页> 外文期刊>Lightwave Technology, Journal of >All-Optical Switches Based on Multiple Cascaded Resonators With Reduced Switching Intensity-Response Time Products
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All-Optical Switches Based on Multiple Cascaded Resonators With Reduced Switching Intensity-Response Time Products

机译:基于多个级联谐振器的全光开关,降低了开关强度响应时间乘积

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摘要

The general nonlinear behavior of multiple cascaded resonators is analyzed by using the coupled-mode theory in time and then compared to a single resonator from the viewpoint of optical bistable operation. Our analysis reveals that from the perspective of switching intensity, the multiple resonator structure is more advantageous than the single resonator with an equivalently increasing quality factor. It is also shown that a switching intensity-response time product, suggested as a performance metric for optical bistable devices, decreases linearly as the number of cascaded resonators increases. The effect of coupling $n$ resonators is equivalent to a single resonator device with $n$-time increased quality factor in terms of the performance metric. The coupled-mode theory analysis is confirmed by a numerical study of the bistable operation of one-dimensional photonic crystal resonator structures using the finite-difference time-domain method.
机译:通过使用耦合模式理论及时分析了多个级联谐振器的一般非线性行为,然后从光学双稳态操作的角度将其与单个谐振器进行了比较。我们的分析表明,从开关强度的角度来看,多谐振器结构比单谐振器更具优势,并且品质因数相等。还表明,开关强度-响应时间乘积(建议用作光学双稳态器件的性能指标)随着级联谐振器数量的增加而线性减小。耦合$ n $个谐振器的效果等效于单个谐振器设备,就性能指标而言,其质量因子增加了$ n $倍。耦合模式理论分析通过使用有限差分时域方法对一维光子晶体谐振器结构的双稳态操作进行的数值研究得到证实。

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