Whiting Eric B, Kang Lei, Jenkins Ronald P, Campbell Sawyer D, Werner Douglas H
Opt Express. 2023 Jul 3;31(14):22415-22423. doi: 10.1364/OE.494714.
Chiral meta-mirrors provide a unique opportunity for achieving handedness-selective strong light-matter interaction at the nanometer scale. Importantly, the chiral resonances observed in chiral meta-mirrors arise from the spin-dependent resonant cavity which, however, is generally narrowband. In this paper, by exploiting a genetic algorithm (GA) based optimization method, we numerically validate a chiral meta-mirror with octave bandwidth. In particular, in the wavelength range from 1000 to 2000 nm, the proposed chiral meta-mirror strongly absorbs circularly polarized light of one handedness while highly reflecting the other. A field analysis indicates that the observed broadband chiroptical response can be attributed to the multiple chiral resonances supported by the optimized meta-mirror across the band of interest. The observed broadband chiral response confirms the potential of advanced inverse-design approaches for the creation of chiral metadevices with sophisticated functionalities. Based on the Lorentz reciprocity theorem, we show that the proposed meta-mirror can enable chiral-selective broadband second harmonic generation (SHG). Our study indicates that the application of advanced inverse-design approaches can greatly facilitate the development of metadevices with strong chiral response in both the linear and nonlinear regimes.
手性超表面镜为在纳米尺度上实现手性选择性强光与物质相互作用提供了独特的机会。重要的是,在手性超表面镜中观察到的手性共振源于自旋相关的共振腔,然而,该共振腔通常是窄带的。在本文中,通过利用基于遗传算法(GA)的优化方法,我们在数值上验证了一种具有倍频程带宽的手性超表面镜。特别是,在1000至2000nm的波长范围内,所提出的手性超表面镜强烈吸收一种手性的圆偏振光,同时高度反射另一种手性的圆偏振光。场分析表明,观察到的宽带手性光学响应可归因于优化后的超表面镜在感兴趣的频段内支持的多个手性共振。观察到的宽带手性响应证实了先进的逆向设计方法在创建具有复杂功能的手性超表面器件方面的潜力。基于洛伦兹互易定理,我们表明所提出的超表面镜可以实现手性选择性宽带二次谐波产生(SHG)。我们的研究表明,先进的逆向设计方法的应用可以极大地促进在线性和非线性区域中具有强手性响应的超表面器件的发展。