Tang Haotian, Rosenmann Daniel, Czaplewski David A, Yang Xiaodong, Gao Jie
Opt Express. 2022 May 23;30(11):20063-20075. doi: 10.1364/OE.457218.
Most chiral metamaterials and metasurfaces are designed to operate in a single wavelength band and with a certain circular dichroism (CD) value. Here, mid-infrared chiral metasurface absorbers with selective CD in dual-wavelength bands are designed and demonstrated. The dual-band CD selectivity and tunability in the chiral metasurface absorbers are enabled by the unique design of a unit cell with two coupled rectangular bars. It is shown that the sign of CD in each wavelength band can be independently controlled and flipped by simply adjusting the geometric parameters, the width and the length, of the vertical rectangular bars. The mechanism of the dual-band CD selection in the chiral metasurface absorber is further revealed by studying the electric field and magnetic field distributions of the antibonding and bonding modes supported in the coupled bars under circularly polarized incident light. Furthermore, the chiral resonance wavelength can be continuously increased by scaling up the geometric parameters of the metasurface unit cell. The demonstrated results will contribute to the advance of future mid-infrared applications such as chiral molecular sensing, thermophotovoltaics, and optical communication.
大多数手性超材料和超表面被设计为在单一波长波段且具有特定圆二色性(CD)值的情况下工作。在此,设计并展示了在双波长波段具有选择性圆二色性的中红外手性超表面吸收体。手性超表面吸收体中的双波段圆二色性选择性和可调性是通过具有两个耦合矩形条的单元胞独特设计实现的。结果表明,通过简单调整垂直矩形条的几何参数(宽度和长度),每个波长波段的圆二色性符号可被独立控制和翻转。通过研究圆偏振入射光下耦合条中支持的反键和键合模式的电场和磁场分布,进一步揭示了手性超表面吸收体中双波段圆二色性选择的机制。此外,通过按比例放大超表面单元胞的几何参数,手性共振波长可以连续增加。所展示的结果将有助于推动未来中红外应用的发展,如手性分子传感、热光伏和光通信。