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Numerical simulation of all optical demultiplexer based on pillar photonic crystal ring resonators

机译:基于柱光子晶体环谐振器的所有光学解复用器的数值模拟

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摘要

We present the numerical simulation of an all-optical demultiplexer using 2D photonic crystal ring resonators for optical communications systems. The structure consists of three ring resonators, one bus waveguide, and three drop waveguides. The photonic crystal of the demultiplexer has a square-shaped structure made up of silicon rods with lattice constant a=548nm, filling factor(r/a) of 0.18, where r is the radius of the rods, and linear refractive index of n=3.4. The structure can filter three standard wavelengths with 4.2nm channel spacing between the wavelengths. From the simulations, the mean quality factor and transmission efficiency of our structure are computed to be respectively 4936 and 96.5%, at wavelengths very close to 1.55m. The minimum and maximum values of crosstalk are -18.6dB and -34.6dB, respectively. The footprint of the device is 293.7m(2), which is suitable for photonic integrated circuits. The optical characteristics and the behavior of the proposed demultiplexer have been achieved by means of finite-difference time-domain (FDTD) method.
机译:我们使用用于光通信系统的2D光子晶环谐振器的全光解复用器的数值模拟。该结构包括三个环谐振器,一个总线波导和三个滴拉珠。多路分解器的光子晶体具有由硅棒构成的方形结构,晶格常数a = 548nm,填充因子(r / a)为0.18,其中R是杆的半径,n =的线性折射率3.4。该结构可以在波长之间过滤三个标准波长,其中4.2nm通道间隔。从模拟中,我们结构的平均质量因子和传输效率被计算为分别为4936和96.5%,波长非常接近1.55米。串扰的最小值和最大值分别为-18.6db和-34.6db。该装置的占地面积是293.7M(2),适用于光子集成电路。通过有限差分时域(FDTD)方法已经实现了所提出的解复用器的光学特性和行为。

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