Jiang Xu-Xian, Xiao Zhong-Yin, Wang Xin-Wen, Cheng Pei
Appl Opt. 2023 May 10;62(14):3519-3527. doi: 10.1364/AO.484368.
A switchable and tunable dual-function absorber/polarization converter is presented in this work. The constitution of the structure, which incorporates patterned graphene and photosensitive silicon (Si), can minimize undesired optical losses. Simulated results show that when the Si is metallic, the structure behaves as a broadband absorption of more than 90% in the range of 1.45-3.36 THz. Its peak absorption can be tuned from 22% to 99.8% by changing the Fermi energy of graphene. Furthermore, the interference theory analyzes the physical mechanism for broadband absorption. When the Si is in the dielectric state, the structure has a transmission polarization conversion function, which realizes the conversion from linear to cross-polarized waves. The polarization conversion ratio (PCR) is greater than 90% in the 3.82-4.43 THz range. Meanwhile, the cross-polarization transmission can be dynamically tuned from 28% to 97%, and the PCR can also be tuned from 17% to 99.9% by adjusting the conductivity of the Si. The reason for realizing polarization conversion is explained by the polarization decomposition method. This study provides a design opinion of high-performance multifunctional tunable terahertz devices.
本文提出了一种可切换、可调节的双功能吸收器/偏振转换器。该结构由图案化石墨烯和光敏硅(Si)组成,可将不必要的光学损耗降至最低。模拟结果表明,当硅处于金属态时,该结构在1.45 - 3.36太赫兹范围内表现出超过90%的宽带吸收。通过改变石墨烯的费米能量,其峰值吸收率可从22%调至99.8%。此外,利用干涉理论分析了宽带吸收的物理机制。当硅处于介电态时,该结构具有透射偏振转换功能,可实现从线偏振波到交叉偏振波的转换。在3.82 - 4.43太赫兹范围内,偏振转换率(PCR)大于90%。同时,通过调节硅的电导率,交叉偏振透射率可在28%至97%之间动态调节,PCR也可在17%至99.9%之间调节。采用偏振分解方法解释了实现偏振转换的原因。本研究为高性能多功能可调谐太赫兹器件提供了一种设计思路。