Tunable metamaterial with quantitatively switchable anapole modes via quasi-BIC using two methods
Abstract
Traditional anapole metamaterials exhibit limited tunability and only support single mode. Herein, we employ two methods to achieve the switch from anapole to dual-anapole in a simple metal-perforated structure. As the asymmetry parameter α increases, the quasi-bound states in the continuum (q-BIC) exhibit characteristics of an anapole mode, and switching between anapole and dual-anapole can be accomplished by altering the polarization mode. Alternatively, by incorporating graphene sheet, this functionality can also be realized at very low Fermi energy levels, and even enable anapole mode switching. Furthermore, the effect of the asymmetry parameter α on the sensing and slow-light properties of metamaterials is examined separately. The metamaterials demonstrate group delays of up to 100 ps and a sensitivity of 189 GHz/RIU. Our proposed tunable anapole metamaterials hold significant potential for applications in biosensing, filtering, and optical switching.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Yongzheng Sun
School of Science, Jiangnan University 1 , Wuxi 214122,
Yuxuan Chen
Xuefeng Qin
School of Science, Jiangnan University 1 , Wuxi 214122,
Yang Huang
Guizhou Provincial Key Laboratory of Innovation and Manufacturing for Pharmaceuticals, School of Pharmacy
Han Xiong
Nianxi Xu
Key Laboratory of Optical System Advanced Manufacturing Technology, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences 3 , Changchun 130033,
Ben-Xin Wang
School of Science, Jiangnan University 3 , Wuxi 214122,