论文标题
光活性和非线性手性超材料
Optically Active and Nonlinear Chiral Metamaterials
论文作者
论文摘要
先进的光子纳米结构已使合成脊髓性活性的最大化。这些构建基块的独特结构赋予了等离子体结构和介电介质中电磁波的手性选择性相互作用。鉴于文献中优化的手性表面的曲目和有机领域中手性的无处不在,要考虑的自然方向是这些设备在较大的光学系统中的操作,就像他们的手性有机同行一样。在这篇综述中,我们概括了主动和非线性手性超材料的进步。许多结果,例如磁性各向异性和第三谐波雷利散射光活性,都是更传统的调谐方法和非线性过程的相对未知的成员。我们认为,他们有望在设计高级手柄系统中发挥工具作用,以用于生物化学,valleytronics,spintronics和Hishiral量子光学器件。
Advanced photonic nanostructures have enabled the maximization of synthetic chiroptic activities. The unique structuring of these building blocks has empowered chiral selective interactions with electromagnetic waves in plasmonic structures and dielectric media. Given the repertoire of optimized chiral surfaces in the literature and the ubiquity of chirality in the organic realm, the natural direction to consider is the operation of these devices in larger optical systems much like their chiral organic counterparts. In this review, we recapitulate advances in active and nonlinear chiral metamaterials. Many of the results, such as the magneto-chiral anisotropy and third-harmonic Rayleigh scattering optical activity, are relatively unknown members of the more conventional family of tuning methodology and nonlinear processes. We believe they are poised to play an instrumental role in designing advanced chiroptic systems for applications in biochemistry, valleytronics, spintronics, and chiral quantum optics.