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Wideband and low-dispersion engineered slow light using liquid infiltration of a modified photonic crystal waveguide

机译:宽带和低色散工程慢光,使用改良的光子晶体波导的液体渗透

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摘要

We present a wideband and low-dispersion slow-light photonic crystal waveguide with a large normalized delay-bandwidth product that can be exploited in many ultra-compact all-optical devices, such as modulators and switches. The proposed new approach is based on infiltrating optical fluid into the first and second rows of the shifted air holes adjacent to the line-defect waveguide in a hexagonal lattice of photonic crystal. The simulation results show that the normalized delay-bandwidth product can be enhanced to a large value of 0.469 with a wide bandwidth operation of 36.8 nm in the C-band frequency optical communication window. Furthermore, by means of two-dimensional finite-difference time-domain calculations, the low-dispersion slowlight propagation is demonstrated by simulating the temporal Gaussian pulse width broadening. (C) 2016 Optical Society of America
机译:我们提出了具有大归一化延迟带宽乘积的宽带和低色散慢光光子晶体波导,可在许多超紧凑型全光学设备(例如调制器和开关)中加以利用。所提出的新方法是基于使光流体渗透到光子晶体六边形晶格中与线缺陷波导相邻的第一排和第二排移位空气孔中。仿真结果表明,在C波段频率光通信窗口中,通过36.8 nm的宽带宽操作,可以将归一化的延迟带宽积提高到0.469的较大值。此外,通过二维有限差分时域计算,通过模拟时间高斯脉冲宽度展宽来演示低色散慢光传播。 (C)2016美国眼镜学会

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