Journal article
Quantum Strong Coupling with Protein Vibrational Modes
RMA Vergauwe, J George, T Chervy, JA Hutchison, A Shalabney, VY Torbeev, TW Ebbesen
Journal of Physical Chemistry Letters | AMER CHEMICAL SOC | Published : 2016
Abstract
In quantum electrodynamics, matter can be hybridized to confined optical fields by a process known as light-matter strong coupling. This gives rise to new hybrid light-matter states and energy levels in the coupled material, leading to modified physical and chemical properties. Here, we report for the first time the strong coupling of vibrational modes of proteins with the vacuum field of a Fabry-Perot mid-infrared cavity. For two model systems, poly(l-glutamic acid) and bovine serum albumin, strong coupling is confirmed by the anticrossing in the dispersion curve, the square root dependence on the concentration, and a vacuum Rabi splitting that is larger than the cavity and vibration line w..
View full abstractGrants
Awarded by ANR Equipex Union
Awarded by Labex NIE projects
Awarded by CSC within the Investissement d'Avenir program
Funding Acknowledgements
Jeremy Ruiz is gratefully acknowledged for help with preparing the deuterated samples and Anoop Thomas for helpful discussions. We acknowledge support from the International Center for Frontier Research in Chemistry (icFRC, Strasbourg), the ANR Equipex Union (ANR-10-EQPX-52-01), the Labex NIE projects (ANR-11-LABX-0058 NIE) and CSC (ANR-10-LABX-0026 CSC) within the Investissement d'Avenir program ANR-10-IDEX-0002-02.