螺旋度
圆二色性
物理
分子
光学
反射(计算机编程)
分子物理学
光学腔
圆极化
振动圆二色性
吸收(声学)
横截面
原子物理学
谱线
激光器
结晶学
化学
量子力学
工程类
微带线
结构工程
计算机科学
程序设计语言
作者
Joshua Feis,Dominik Beutel,Julian Köpfler,Xavier Garcia‐Santiago,Carsten Rockstuhl,Martin Wegener,Ivan Fernandez‐Corbaton
标识
DOI:10.1103/physrevlett.124.033201
摘要
Researchers routinely sense molecules by their infrared vibrational "fingerprint" absorption resonances. In addition, the dominant handedness of chiral molecules can be detected by circular dichroism (CD), the normalized difference between their optical response to incident left- and right- handed circularly polarized light. Here, we introduce a cavity composed of two parallel arrays of helicity-preserving silicon disks that allows to enhance the CD signal by more than two orders of magnitude for a given molecule concentration and given thickness of the cell containing the molecules. The underlying principle is first-order diffraction into helicity-preserving modes with large transverse momentum and long lifetimes. In sharp contrast, in a conventional Fabry-Perot cavity, each reflection flips the handedness of light, leading to large intensity enhancements inside the cavity, yet to smaller CD signals than without the cavity.
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