研究目的
Investigating the giant plasmonically induced circular conversion dichroism in transmission and reflection from the golden slit grating filled by chiral medium, and the influence mechanism from the geometrical anisotropy, chiroptical resonance of molecules, and plasmonic resonance.
研究成果
The research demonstrates the PI-CCDT effect in transmission and PI-unCCDR effect in reflection in GSGCM, revealing the key roles of geometric anisotropy and the real part of chirality parameter Re(ξ) in these effects. The findings contribute to the understanding of PI-chiroptical effects and suggest potential applications in chiral photonic devices and biosensors.
研究不足
The study focuses on theoretical simulations and may require experimental validation to confirm the findings. The specific chiral medium and metal grating parameters used may limit the generalizability of the results to other materials or configurations.