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Modeling of a highly nonlinear chalcogenide dual-core photonic crystal fiber coupler

机译:高非线性硫族化物双核光子晶体光纤耦合器的建模

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摘要

The switching operation of a nonlinear dual-core photonic crystal fiber (PCF) coupler, based on a highly nonlinear As_(2)Se_(3) chalcogenide glass, is numerically studied for the first time. Combining the standard coupled-mode formulation with a full-vectorial integral equation analysis of the PCF geometry, we show that the device parameters can be tailored to achieve switching power requirement approx1 W at a coupler length of only few centimeters. The dispersion results show that efficient switching can be attained for pulsewidths greater than approx2 ps.
机译:首次数值研究了基于高度非线性的As_(2)Se_(3)硫族化物玻璃的非线性双芯光子晶体光纤(PCF)耦合器的开关操作。将标准耦合模式公式与PCF几何形状的全矢量积分方程分析结合起来,我们表明,可以对器件参数进行定制,以在仅几厘米的耦合器长度处实现约1 W的开关功率要求。色散结果表明,对于大于大约2 ps的脉冲宽度,可以实现有效的切换。

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