Wang Shengyi, Kuang Hanzhuo, Li Wenjie, Wang Yanni, Luo Hao, Li Chengjun, Ge Hua, Wang Qiu, Jia Bowen
School of Information Engineering, Wuhan University of Technology, Wuhan 430070, China.
Department of Respiratory and Critical Care Medicine, Renmin Hospital of Wuhan University, Wuhan 430060, China.
Nanomaterials (Basel). 2024 Jun 5;14(11):979. doi: 10.3390/nano14110979.
Multi-band circular dichroism (CD) response and tunability on the chiral metasurface are crucial for this device's applications in sensing and detection. This work proposes a dual-band CD Au-CaF-Au dimer elliptical metasurface absorber, where chiroptical sensing is realized by breaking the geometric symmetry between two ellipses. The proposed metasurface can achieve high CD values of 0.8 and -0.74 for the dual-band within the 3-5 μm region, and the CD values can be manipulated by independently adjusting the geometric parameters of the metasurface. Furthermore, a slotted nanocircuit is introduced onto the metasurface to enhance its tunability by manipulating the geometry parameter in the design process, and the related mechanism is explained using an equivalent circuit model. The simulation of the sensing model revealed that the slotted nanocircuit enhances the sensor's tunability and significantly improves its bandwidth and sensitivity, achieving peak enhancements at approximately 753 nm and 1311 nm/RIU, respectively. Due to the strong dual-band positive (and negative) responses of the CD values, flexible wavelength tunability, and nonlinear sensitivity enhancement, this design provides a new approach for the development and application of mid-infrared chiroptical devices.
手性超表面上的多波段圆二色性(CD)响应和可调性对于该器件在传感与检测中的应用至关重要。这项工作提出了一种双波段CD金 - 氟化钙 - 金二聚体椭圆超表面吸收体,其中通过打破两个椭圆之间的几何对称性来实现手性光学传感。所提出的超表面在3 - 5μm区域内的双波段可实现高达0.8和 - 0.74的高CD值,并且可以通过独立调整超表面的几何参数来操纵CD值。此外,在超表面上引入了开槽纳米电路,通过在设计过程中操纵几何参数来增强其可调性,并使用等效电路模型解释了相关机制。传感模型的模拟表明,开槽纳米电路增强了传感器的可调性,并显著提高了其带宽和灵敏度,分别在约753nm和1311nm/RIU处实现了峰值增强。由于CD值具有强烈的双波段正(和负)响应、灵活的波长可调性以及非线性灵敏度增强,该设计为中红外手性光学器件的开发和应用提供了一种新方法。