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Actively tunable polarization-sensitive multiband absorber based on graphene

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【作者】 曹爱利张昆张佳瑞刘燕孔伟金

【Author】 Ai-Li Cao;Kun Zhang;Jia-Rui Zhang;Yan Liu;Wei-Jin Kong;College of Physics Science, Center for Marine Observation and Communications, Qingdao University;

【通讯作者】 张昆;孔伟金;

【机构】 College of Physics Science, Center for Marine Observation and Communications, Qingdao University

【摘要】 We design an actively tunable polarization-sensitive multiband absorber in the mid-infrared region, which consists of stacked graphene multilayers separated by dielectric layers on a metal mirror. Benefiting from the anisotropic structure, the absorber has dual absorption bands with almost perfect absorption at different wavelengths under the x and y polarizations.Analyzing the electric field amplitude distributions and the surface currents, we find that the absorption peaks under the same polarization are excited in the graphene layers independently. Therefore, more absorption bands can be achieved by increasing the graphene layers. Adjusting the Fermi energy of the graphene layers, the working wavelengths of the polarization-sensitive multiband absorbers can be tuned actively, and thus achieving a wide band regulation range. Besides,the peak number and the peak strength of the multiband absorber can be actively controlled by the polarization angle as well. We also propose a method to design an actively tunable polarization-sensitive multiband absorber, which may have potential applications in mid-infrared devices, such as polarization-sensitive filters and detectors.

【Abstract】 We design an actively tunable polarization-sensitive multiband absorber in the mid-infrared region, which consists of stacked graphene multilayers separated by dielectric layers on a metal mirror. Benefiting from the anisotropic structure, the absorber has dual absorption bands with almost perfect absorption at different wavelengths under the x and y polarizations.Analyzing the electric field amplitude distributions and the surface currents, we find that the absorption peaks under the same polarization are excited in the graphene layers independently. Therefore, more absorption bands can be achieved by increasing the graphene layers. Adjusting the Fermi energy of the graphene layers, the working wavelengths of the polarization-sensitive multiband absorbers can be tuned actively, and thus achieving a wide band regulation range. Besides,the peak number and the peak strength of the multiband absorber can be actively controlled by the polarization angle as well. We also propose a method to design an actively tunable polarization-sensitive multiband absorber, which may have potential applications in mid-infrared devices, such as polarization-sensitive filters and detectors.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11804178 and 11274188);the Natural Science Foundation of Shandong Province, China (Grant No. ZR2018BA027)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2020年11期
  • 【分类号】TB34
  • 【下载频次】20
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