Single-molecule optomechanics in “picocavities”

Author:

Benz Felix1,Schmidt Mikolaj K.2,Dreismann Alexander1,Chikkaraddy Rohit1,Zhang Yao2,Demetriadou Angela23,Carnegie Cloudy1,Ohadi Hamid1,de Nijs Bart1,Esteban Ruben2,Aizpurua Javier2,Baumberg Jeremy J.1

Affiliation:

1. NanoPhotonics Centre, Cavendish Laboratory, Department of Physics, University of Cambridge, Cambridge CB3 0HE, UK.

2. Materials Physics Center CSIC-UPV/EHU and Donostia International Physics Center, 20018 Donostia–San Sebastián, Spain.

3. Blackett Laboratory, London SW7 2AZ, UK.

Abstract

A cool route to nanospectroscopy Confining light to a cavity is often used to enhance the interaction between the light and a particle stored within the cavity. Benz et al. worked with a self-assembled monolayer of biphenyl-4-thiol molecules sandwiched between a gold film and a gold nanoparticle. They used laser irradiation to move atoms in the nanoparticle and produced a “picocavity” that was stable at cryogenic temperatures. The authors were then able to obtain time-dependent Raman spectra from individual molecules. Such subwavelength cavities that can localize light to volumes well below 1 nm 3 will enable optical experiments on the atomic scale. Science , this issue p. 726

Funder

MINECO (Ministerio de Economia y Competitividad)

Winton Programme for the Physics of Sustainability

Dr. Manmohan Singh scholarship

UK National Physical Laboratory

FEDER

UK Engineering and Physical Sciences Research Council

European Research Council

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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