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Controllable and tunable plasma photonic crystals through a combination of photonic crystal and dielectric barrier discharge patterns

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【作者】 郭丽婷潘宇扬于广林王朝阳高匡雅范伟丽董丽芳

【Author】 Liting GUO;Yuyang PAN;Guanglin YU;Zhaoyang WANG;Kuangya GAO;Weili FAN;Lifang DONG;College of Quality and Technical Supervision, Hebei University;College of Physics Science and Technology, Hebei University;

【通讯作者】 潘宇扬;董丽芳;

【机构】 College of Quality and Technical Supervision, Hebei UniversityCollege of Physics Science and Technology, Hebei University

【摘要】 We report five types of patterns with square symmetry, including three novel types obtained by inserting a specially designed grid photonic crystal(PC) into a dielectric barrier discharge system. They are studied using an intensified charge-coupled device camera and photomultiplier tubes. The three novel types of patterns are a square pattern with one structure, a square superlattice pattern with four sublattices and a(1/4)Kgrid(Kgridis the basic wave vector of the grid), and another square pattern with a complex inversion discharge sequence. From the application viewpoint, the five types of patterns can be used as plasma photonic crystals(PPCs).Their band diagrams under a transverse-magnetic wave simulated by the finite element method show that there are a large number of band gaps. Compared with the original PC with only a unidirectional band gap, the five types of PPCs have tunable and omnidirectional band gaps,which is very important in controlling the propagation of electromagnetic waves in the mm-wave region. The experimental results enrich the pattern types in the dielectric barrier discharge system and provide a method for obtaining PPCs with symmetry controllability and bandgap tunability.

【Abstract】 We report five types of patterns with square symmetry, including three novel types obtained by inserting a specially designed grid photonic crystal(PC) into a dielectric barrier discharge system. They are studied using an intensified charge-coupled device camera and photomultiplier tubes. The three novel types of patterns are a square pattern with one structure, a square superlattice pattern with four sublattices and a(1/4)Kgrid(Kgridis the basic wave vector of the grid), and another square pattern with a complex inversion discharge sequence. From the application viewpoint, the five types of patterns can be used as plasma photonic crystals(PPCs).Their band diagrams under a transverse-magnetic wave simulated by the finite element method show that there are a large number of band gaps. Compared with the original PC with only a unidirectional band gap, the five types of PPCs have tunable and omnidirectional band gaps,which is very important in controlling the propagation of electromagnetic waves in the mm-wave region. The experimental results enrich the pattern types in the dielectric barrier discharge system and provide a method for obtaining PPCs with symmetry controllability and bandgap tunability.

【基金】 supported by National Natural Science Foundation of China (No. 12075075);the Natural Science Foundation of Hebei Province, China (Nos. 2020201016 and A2018201154)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2023年08期
  • 【分类号】O734
  • 【下载频次】1
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