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Giant mid-IR resonant coupling to molecular vibrations in sub-nm gaps of plasmonic multilayer metafilms

Physics

Giant mid-IR resonant coupling to molecular vibrations in sub-nm gaps of plasmonic multilayer metafilms

R. Arul, D. Grys, et al.

This groundbreaking research by Rakesh Arul, David-Benjamin Grys, Rohit Chikkaraddy, Niclas S. Mueller, Angelos Xomalis, Ermanno Miele, Tijmen G. Euser, and Jeremy J. Baumberg showcases the revolutionary potential of self-assembled gold nanoparticle multilayers for creating tunable collective plasmon-polariton resonances in the visible and infrared spectrum, offering significant advancements in Raman and infrared sensing for ultra-small sample volumes.

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~3 min • Beginner • English
Abstract
Nanomaterials capable of confining light are desirable for enhancing spectroscopies such as Raman scattering, infrared absorption, and nonlinear optical processes. Plasmonic superlattices have shown the ability to host collective resonances in the mid-infrared, but require stringent fabrication processes to create well-ordered structures. Here, we demonstrate how short-range-ordered Au nanoparticle multilayers on a mirror, self-assembled by a sub-nm molecular spacer, support collective plasmon-polariton resonances in the visible and infrared, continuously tunable beyond 11 µm by simply varying the nanoparticle size and number of layers. The resulting molecule-plasmon system approaches vibrational strong coupling, and displays giant Fano dip strengths, SEIRA enhancement factors ~10⁴, light-matter coupling strengths g~100 cm⁻¹, Purcell factors ~10⁶, and mode volume compression factors ~10⁸. The collective plasmon-polariton mode is highly robust to nanoparticle vacancy disorder and is sustained by the consistent gap size defined by the molecular spacer. Structural disorder efficiently couples light into the gaps between the multilayers and mirror, enabling Raman and infrared sensing of sub-picolitre sample volumes.
Publisher
Light: Science & Applications
Published On
Nov 28, 2022
Authors
Rakesh Arul, David-Benjamin Grys, Rohit Chikkaraddy, Niclas S. Mueller, Angelos Xomalis, Ermanno Miele, Tijmen G. Euser, Jeremy J. Baumberg
Tags
Gold Nanoparticles
Plasmon-Polariton Resonances
SEIRA Enhancement
Light-Matter Coupling
Raman Sensing
Infrared Sensing
Nanotechnology
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