Arul Rakesh, Menghrajani Kishan, Rider Marie S, Chikkaraddy Rohit, Barnes William L, Baumberg Jeremy J
NanoPhotonics Centre, Cavendish Laboratory, Department of Physics, JJ Thompson Avenue, University of Cambridge, Cambridge, CB3 0HE, United Kingdom.
Department of Physics and Astronomy, University of Exeter, Exeter, EX4 4QL, United Kingdom.
Phys Rev Lett. 2023 Sep 22;131(12):126902. doi: 10.1103/PhysRevLett.131.126902.
Strong coupling of molecular vibrations with light creates polariton states, enabling control over many optical and chemical properties. However, the near-field signatures of strong coupling are difficult to map as most cavities are closed systems. Surface-enhanced Raman microscopy of open metallic gratings under vibrational strong coupling enables the observation of spatial polariton localization in the grating near field, without the need for scanning probe microscopies. The lower polariton is localized at the grating slots, displays a strongly asymmetric line shape, and gives greater plasmon-vibration coupling strength than measured in the far field. Within these slots, the local field strength pushes the system into the ultrastrong coupling regime. Models of strong coupling which explicitly include the spatial distribution of emitters can account for these effects. Such gratings enable exploration of the rich physics of polaritons, its impact on polariton chemistry under flow conditions, and the interplay between near- and far-field properties through vibrational polariton-enhanced Raman scattering.
分子振动与光的强耦合产生极化激元态,从而能够控制许多光学和化学性质。然而,由于大多数腔是封闭系统,强耦合的近场特征难以测绘。在振动强耦合条件下对开放金属光栅进行表面增强拉曼显微镜观察,无需扫描探针显微镜就能观察到光栅近场中空间极化激元的局域化。较低的极化激元局域在光栅狭缝处,呈现出强烈不对称的线形,并且与远场测量相比,具有更强的等离子体 - 振动耦合强度。在这些狭缝内,局部场强将系统推向超强耦合 regime。明确包含发射器空间分布的强耦合模型可以解释这些效应。此类光栅有助于探索极化激元的丰富物理特性、其在流动条件下对极化激元化学的影响,以及通过振动极化激元增强拉曼散射实现近场和远场特性之间的相互作用。