Computing of the quality factor in a two dimensional photonic crystal microcavity

A. Benmerkhi, M. Bouchemat, T. Bouchemat, E. Casson
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Abstract

In the present paper, we present the design of a filter formed by two waveguide couplers and one microcavity in a photonic crystal (PC) with a square lattice consists of long cylinders of silicon (Si) rods. Waveguide 1 and waveguide 2 are obtained by removing one row of rods. They are used to couple light in and out the microcavity. The finite difference time domain (FDTD) method (fullwave simulator) has been used to simulate optical propagation in this filter. Two rods have been located in the input and output channel waveguides. Their numbers and size have been varied in order to optimize the transmitted power and quality factor of the microcavity. We demonstrate that the calculated Q factor for the designed cavity increases with displacing rods, while the calculated modal volume remains almost constant.
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二维光子晶体微腔中品质因子的计算
在本论文中,我们设计了一个由两个波导耦合器和一个微腔组成的滤波器,该滤波器是在由长圆柱形硅棒组成的方形晶格光子晶体(PC)中设计的。波导1和波导2是通过去除一排棒得到的。它们被用来耦合进出微腔的光。利用时域有限差分(FDTD)方法(全波模拟器)模拟了光在该滤波器中的传播。在输入和输出通道波导中设置了两个棒。为了优化微腔的传输功率和品质因子,改变了它们的数量和尺寸。我们证明了计算出的设计腔的Q因子随着杆的位移而增加,而计算出的模态体积几乎保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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