首页|基于二维点缺陷可重构光子晶体的毫米波微等离子体源的研究

基于二维点缺陷可重构光子晶体的毫米波微等离子体源的研究

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本文根据光子晶体缺陷理论,利用HFSS软件设计了一款基于二维可重构光子晶体阵列的毫米波微等离子体源,研究其谐振特性和电磁场分布等.仿真结果表明:晶格数目、介质柱半径和介质柱间距等参数对毫米波微等离子体源的S参数和电磁场分布等有较大影响;当谐振频率为76.02 GHz时,S11 为-25.11 dB,品质因数 Q为 400.11,最大电场强度可以达到2.3×105 V/m.本文工作对基于二维可重构光子晶体的毫米波微等离子体源的进一步研究提供参考.
Research on Millimeter Wave Microplasma Source Based on Two-dimensional Point-defect Reconfigurable Photonic Crystal
According to the theory of photonic crystal with vacancy,a millimeter wave microplasma source based on 2D point-defect reconfigurable photonic crystal array is designed by using HFSS software,and the resonant properties and electromagnetic field distribution of it are studied.The simulation results show that number and radius of dielectric column and lattice spacing have significant influences on S-pa-rameters and electromagnetic field distribution of the millimeter wave microplasma source.When the reso-nant frequency is 76.02 GHz,the S11 valueis-25.11 dB,thequality factor is 400.11,and the maximum electric field strength can reach 2.3×105 V/m.The work provides a reference for research of millimeter wave microplasma source based on 2D point-defect reconfigurable photonic crystal array.

Reconfigurable photonic crystal arrayMillimeter wave microplasma sourceResonatorS-parametersElectromagnetic field distribution

陈骏百、廖斌

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华东师范大学通信与电子工程学院 ,上海 200241

上海市多维度信息处理重点实验室 ,上海 200241

可重构光子晶体阵列 毫米波微等离子体源 谐振器 S参数 电磁场分布

上海市多维度信息处理重点实验室开放课题基金项目

2020KEY002

2024

真空电子技术
北京真空电子技术研究所

真空电子技术

影响因子:0.166
ISSN:1002-8935
年,卷(期):2024.(1)
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