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Design of an ultracompact low-power all-optical modulator by means of dispersion engineered slow light regime in a photonic crystal Mach-Zehnder interferometer

机译:利用光子晶体马赫曾德尔干涉仪中的色散工程慢光方案设计超紧凑型低功耗全光调制器

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摘要

We present the design procedure for an ultracompact low-power all-optical modulator based on a dispersion-engineered slow-light regime in a photonic crystal Mach-Zehnder interferometer (PhC MZI), selectively infiltrated by nonlinear optical fluids. The dispersionless slow-light regime enhancing the nonlinearities enabled a 22 (mu)m long PhC MZI to operate as a modulator with an input power as low as 3 mW/(mu)m. Simulations reveal that the switching threshold can be controlled by varying the optofluidic infiltration.
机译:我们提出了一种基于光子晶体马赫曾德尔干涉仪(PhC MZI)中的色散工程慢光方案的超紧凑型低功率全光调制器的设计程序,该光子晶体被非线性光学流体选择性渗透。增强非线性的无色散慢光体制使22μm长的PhC MZI可以用作输入功率低至3 mW /μm的调制器。仿真表明,可以通过改变光流体渗透来控制转换阈值。

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