太赫兹辐射
石墨烯
极化(电化学)
宽带
线性二色性
小型化
雷
圆极化
超材料
线极化
等离子体子
光电探测器
电介质
光电子学
物理
光学
材料科学
圆二色性
纳米技术
微带线
化学
物理化学
激光器
结晶学
作者
Ubaid Ur Rahman Qureshi,Shahid Basir,Fatma Mallek,Habib Hamam
标识
DOI:10.1038/s41598-024-55676-4
摘要
Abstract Motivated by the imperative demand for design integration and miniaturization within the terahertz (THz) spectrum, this study presents an innovative solution to the challenges associated with singular functionality, limited application scope, and intricate structures prevalent in conventional metasurfaces. The proposed multifunctional tunable metasurface leverages a hybridized grapheme–metal structure, addressing critical limitations in existing designs. Comprising three distinct layers, namely a graphene–gold resonance layer, a Topas dielectric layer, and a bottom gold film reflective layer, this terahertz metasurface exhibits multifunctionality that is both polarization and incident-angle independent. The metasurface demonstrates a broadband circular dichroism (CD) function when subjected to incident circularly polarized waves. In contrast, under linear incidence, the proposed design achieves functionalities encompassing linear dichroism (LD) and polarization conversion. Remarkably, graphene's chemical potential and the incident light’s state can be manipulated to tune each functional aspect's intensity finely. The proposed tunable multifaceted metasurface showcases significant referential importance within the terahertz spectrum, mainly contributing to advancing CD metamirrors, chiral photodetectors, polarization digital imaging systems, and intelligent switches.
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