Transmission Properties in Plasma Photonic Crystal Controlled by Magnetic Fields

Author:

Wang Hailu123,Li Jianfei4,Guo Liang23,Ma Dongliang23,Yao Jingfeng4ORCID,Li He-Ping1

Affiliation:

1. Department of Engineering Physics, Tsinghua University, Beijing 100084, China

2. Institute of Defense Engineering, Academy of Military Science (AMS), The People’s Liberation Army (PLA), Luoyang 471023, China

3. Henan Key Laboratory of Special Protective Materials, Luoyang 471023, China

4. School of Physics, Harbin Institute of Technology, Harbin 150001, China

Abstract

The transmission properties in two-dimensional plasma photonic crystal composed of plasma and yttrium–iron–garnet rods with square lattices are demonstrated under different electron densities and external magnetic fields. The TE and TM modes respond to the permittivity tensor and the permeability tensor produced by the magnetic field. For TM polarization, two distinct attenuation peaks appear in the ranges of 3.4–3.62 GHz and 3.78–4 GHz, induced by the external magnetic fields, and the location of these attenuation peaks can be modulated by modifying the electron densities. For TE polarization, a flat transmission spectrum was obtained in the range of 4–4.6 dB by increasing the electron density to 3×1012 cm−3. Then, a Y-shaped plasma photonic crystal waveguide is designed. The transmission path can be modulated by changing the direction of the external magnetic field. By regulating the electron density, switching the Y-shaped waveguide on and off can be achieved.

Funder

Natural Science Foundation of China

Publisher

MDPI AG

Subject

Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics

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