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Effect of variable dielectric constant of Si material rods on 2-D photonic crystal ring resonator based channel drop filter for ITU.T.694.2 CWDM system

机译:Si材料棒对ITU.T.694.2 CWDM系统基于2-D光子晶环谐振器基于2-D光子晶环谐振器的频道掉滤波器的效果

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In this paper, a new work on channel drop filters (CDFs) based on photonic crystals ring resonators (PCRRs) is presented. The filter characteristics for single-ring configurations based on two dimensional (2D) square lattice photonic crystal (PC) silicon rods have been investigated by using the two-dimensional (2D) finite-difference time-domain (FDTD) method. The CDF we designed can easily separate the light with four different wavelengths simultaneously with high drop efficiency. Among the CWDM system communication wavelengths these are the wavelengths of 1.471, 1.491, 1.511 and 1.531 μm which are the main communication wavelengths with corresponding dielectric constant of silicon materials as 10.24, 10.59, 11.05 and 12.04 are dropped respectively. It is superior to the CDFs reported before and can be used extensively in optical communication systems.
机译:本文介绍了基于光子晶体环谐振器(PCRRS)的通道下降滤波器(CDF)的新工作。 通过使用二维(2D)有限差时域(FDTD)方法,研究了基于二维(2D)方晶晶片光子晶体(PC)硅棒的单环形配置的滤波器特性。 我们设计的CDF可以通过高降低效率轻松地将光与四个不同波长分开。 在CWDM系统通信波长中,这些是1.471,1.491,1.511和1.531μm的波长,其是具有硅材料的相应介电常数的主要通信波长为10.24,10.59,11.05和12.04。 它优于之前报道的CDF,并且可以广泛用于光学通信系统。

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