Multi-band tunable terahertz absorber based on metamaterial
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1.Institute of Micro-nano Optoelectronics and Terahertz Technology, Jiangsu University, Zhenjiang 212013, China;2.School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China;3.School of Precision Instrument and Optoelectronic Engineering, Tianjin University, Tianjin 300072, China

Clc Number:

O436

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Supported by National Natural Science Foundation of China (51405200,51775253), Six Talent Summit Innovation Team Projects in Jiangsu Province (TD-KTHY-005), China Postdoctoral Science Foundation (2015M580395,2019M651725), Natural Science Foundation of Jiangsu Province (BK20180862, BK20170559, BK20190839)

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    Abstract:

    A multi-band tunable terahertz metamaterial absorber is proposed. In the structure of the metamaterial absorber, a photosensitive semiconductor silicon material was added and designed a special top metal resonator, analyzed the influence of the parameters such as the opening length, line width and dielectric layer thickness on the absorption spectral characteristics of the terahertz metamaterial absorber. According to the relationship between illumination and the conductivity of photosensitive semiconductor silicon, studied the frequency tuning characteristics of the terahertz metamaterial absorber. The simulation results obtain 12 absorption frequency modulations in the terahertz band, the absorption rate of 10 absorption peaks of them exceeds 90% near perfect absorption, and 6 absorptions rate up to 99% perfect absorption. Moreover, the absorptivity modulation depth and relative bandwidth reaches 85.9% and 85.5% respectively, with strong tunable characteristics. The photo excited terahertz metamaterial absorber has a simple structure, multi-band tunable and perfect absorption characteristics, and expands the application range of the absorber.

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TONG Yan-Qun, WANG Shi-Yan, SONG Xiao-Xian, YANG Lei, YAO Jian-Quan, YE Yun-Xia, REN Yun-Peng, ZHANG Ya-Ting, XIN Shan-Shan, REN Xu-Dong. Multi-band tunable terahertz absorber based on metamaterial[J]. Journal of Infrared and Millimeter Waves,2020,39(6):735~741

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History
  • Received:February 05,2020
  • Revised:November 13,2020
  • Adopted:June 23,2020
  • Online: November 10,2020
  • Published:
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