首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Design and analysis of single loop and double loop photonic crystal ring resonator based on hexagonal lattice structure
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Design and analysis of single loop and double loop photonic crystal ring resonator based on hexagonal lattice structure

机译:基于六角形晶格结构的单环和双回路光子晶环谐振器的设计与分析

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摘要

Photonic Crystal (PC) based optical devices have been widely explored in recent era due to their capability of miniaturization and large-scale integration of optical and opto-electronic devices. In this paper, two dimensional PC based Single Loop, Double Loop (Horizontal) and Double Loop (Vertical) Ring Resonators using hexagonal lattice structure is designed and analyzed. It reports the Discrete Fourier Transform (DFT) analysis using Finite Difference Time Domain (FDTD) method and calculates the Photonic Band Gap (PBG) using Plane Wave Expansion (PWE) method. The comparative analysis of three configurations based on Q factor reports the outperformance of double loop photonic crystal ring resonator (PCRR) with lattice constants A = 30 and C = 30 at 1550 nm with Q factor 17,000. The Q factor for double loop horizontal and single loop structure is 16,300 and 15,500 at 1550 nm.
机译:由于光学和光电电子设备的小规模集成的能力,基于光子晶体(PC)光学器件已被广泛探索。 在本文中,设计并分析了使用六边形晶格结构的二维基于PC的单环,双回路(水平)和双回路(垂直)环谐振器。 它通过有限差分时域(FDTD)方法报告离散的傅里叶变换(DFT)分析,并使用平面波膨胀(PWE)方法计算光子带隙(PBG)。 基于Q因子的三种配置的比较分析报告了双回路光子晶环谐振器(PCRR)与晶格常数A = 30和C = 30的表现,Q因子17,000。 双回路水平和单环结构的Q系数为1550nm为16,300和15,500。

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