arXiv · 2506.15592
Enhanced vibrational optical activity by near-zero index chiral effective media
Abstract
The enhancement of the inherently weak optical activity of solvated molecules by superchiral fields, crucial for detecting their chirality, is a research frontier of photonics and the basis of novel chiroptical detection schemes. Here, we show that an effective medium consisting of randomly dispersed metal-based nanoparticles embedded within an optically active solvated drug (aqueous reparixin) can enhance vibrational optical rotation and circular dichroism thanks to superchirality produced by slow light in near-zero index conditions. We evaluate from first principles the effective bianisotropic response of the bulk chiral effective medium, showing that, by adjusting the nanoparticles filling fraction, vibrational optical activity is greatly enhanced by a factor $\simeq 10^2-10^3$ at the near-zero index resonance. Our results are relevant for the development of innovative devices capable of detecting the chirality of low-volume samples, with applications in quantum chemistry and nanomedicine.
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Ashis Paul, Matteo Venturi, Raju Adhikary, Giovanna Salvitti, Andrea Toma, Francesco Di Stasio, Hatice Altug, Paola Benassi, Davide Tedeschi, Carino Ferrante, Andrea Marini. 2025-06-18. Enhanced vibrational optical activity by near-zero index chiral effective media. https://arxiv.org/abs/2506.15592
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