7539 Abstract
|Table of Contents|

Study of Electromagnetic Radiation Control Materials Based on Periodic Structure(PDF)

MATERIALS CHINA[ISSN:1674-3962/CN:61-1473/TG]

Issue:
2017年第9期
Page:
41-45
Research Field:
前沿综述
Publishing date:

Info

Title:
Study of Electromagnetic Radiation Control Materials Based on Periodic Structure
Author(s):
ZHOU Peiheng CHEN Wanli ZHANG Linbo ZHANG Nan ZHANG Huibin XIE Jianliang DENG Longjiang
 National Engineering Research Center of Electromagnetic Radiation Control Materials, State Key Laboratory of Electronic Thin
Film and Integrated Devices, University of Electronic Science and Technology of China
Keywords:
electromagnetic radiation control periodic structure absorption polarization conversion infrared radiation
CLC:

PACS:
-
DOI:
10.7502/j.issn.1674-3962.2017.09.09
DocumentCode:

Abstract:
As one of the essential electronic information materials, electromagnetic radiation control material manipulates the transmission, absorption and reflection of propagating electromagnetic wave. Due to the flexible design and unique properties, periodic structure has brought new development to electromagnetic radiation control technique, but its character of strong electrical/magnetic resonance also causes the narrowband problem. In this work, several kinds of electromagnetic radiation control materials based on periodic structure are introduced to realize broadband and high efficiency design by multiresonance coupling. The coupling between electrical/magnetic resonant components breaks the polarization and incident angel dependence of absorption in asymmetric periodic structure; the resonance condition based on effective electromagnetic parameters is proposed to support the design and loading method of periodic structures, eg. field confinement and pattern coupling, and the 10 dB reflection bandwidth has been increased by 65% while the lowfrequency absorption has been increased by almost 3 times; the broadband and highefficiency problem of periodic structure based polarization convector has been solved, while the proposed polarization convector of transmitting type has three functions as bandpass filtering, crosspolarization, and asymmetric transmission. Based on the dielectric layer stacking method, broadband infrared absorbers are proposed with the ability of thermal radiation control, which inspires the new technique for infrared radiation manipulation.

References

Memo

Memo:
Last Update: 2017-10-16