圆二色性
纳米光子学
近场和远场
手性(物理)
圆极化
极化(电化学)
领域(数学)
斯托克斯参量
光学
电磁场
物理
光电子学
化学
散射
手征对称破缺
数学
物理化学
量子力学
纯数学
Nambu–Jona Lasinio模型
结晶学
夸克
微带线
作者
Jorge Olmos‐Trigo,Hiroshi Sugimoto,Minoru Fujii
标识
DOI:10.1002/lpor.202300948
摘要
Abstract Nanophotonics can enhance the inherent weak signal exhibited by chiral molecules in circular dichroism (CD) spectroscopy experiments. One mechanism to achieve this CD enhancement is based on increasing the optical chirality produced by nanophotonics antennas in their near‐field, where chiral molecules are placed. However, ascertaining whether this CD enhancement is reached presents significant experimental challenges due to the complexity of measuring near‐field optical chirality. Here, it is demonstrated that a local and single measurement of the degree of circular polarization in the far‐field enables quantifying near‐field CD enhancements. Thereby, based on this far‐field measurement, the optimal response of the antenna is predicted for enhanced chiral sensing. Experimental validation of this near‐to‐far‐field relation is provided for silicon spherical nanoantennas. The experimental results, supported by analytical theory and exact numerical simulations, can be interesting for the experimental characterization of devices capable of enhancing CD from a single far‐field Stokes measurement.
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