Li Jingyan, Ye Longfang
School of Electronic Science and Engineering, Xiamen University, Xiamen 361005, China.
Shenzhen Research Institute of Xiamen University, Shenzhen 518057, China.
Nanophotonics. 2023 May 3;12(12):2189-2197. doi: 10.1515/nanoph-2023-0128. eCollection 2023 Jun.
Chirality () is a fundamental symmetry property of objects. Detecting and distinguishing molecular chirality in the infrared spectrum is important in life sciences, biology, and chemistry. In this paper, we demonstrate an achiral metasurface based on a gaped dual-germanium-dimer array for enhanced mid-infrared chiral sensing under both circularly polarized light (CPL) and linearly polarized light (LPL) excitations. With the metasurface, strong electric and magnetic dipole resonances with large field enhancement can be generated, resulting in an accessible superchiral hotspot in the dimer gaps under both excitation modes. The maximum electric and magnetic field enhancements exceed 220 and 100 for the bare metasurface, and exceed 70 and 60 for the metasurface coated with a 50 nm chiral biolayer under both excitations, respectively. Importantly, a high volume-averaged enhancement of 241 (444) and of 161 (102) under CPL (LPL) excitation can be achieved for the bare metasurface and it coated with the chiral biolayer, respectively. These results may open up new possibilities for ultrasensitive vibrational circular dichroism (VCD) and rotational optical dispersion (ORD) spectroscopy in the mid-infrared range.
手性是物体的一种基本对称属性。在红外光谱中检测和区分分子手性在生命科学、生物学和化学领域具有重要意义。在本文中,我们展示了一种基于有间隙双锗二聚体阵列的非手性超表面,用于在圆偏振光(CPL)和线偏振光(LPL)激发下增强中红外手性传感。利用该超表面,可以产生具有大场增强的强电偶极和磁偶极共振,从而在两种激发模式下在二聚体间隙中形成可及的超手性热点。对于裸超表面,最大电场和磁场增强分别超过220和100,对于涂覆有50nm手性生物层的超表面,在两种激发下最大电场和磁场增强分别超过70和60。重要的是,对于裸超表面及其涂覆有手性生物层的情况,在CPL(LPL)激发下分别可以实现241(444)和161(102)的高体积平均增强。这些结果可能为中红外范围内的超灵敏振动圆二色性(VCD)和旋转光学色散(ORD)光谱开辟新的可能性。