Cavity-mediated long-range interactions in levitated optomechanics
Abstract
The ability to engineer cavity-mediated interactions has emerged as a powerful tool for the generation of non-local correlations and the investigation of non-equilibrium phenomena in many-body systems. Levitated optomechanical systems have recently entered the multi-particle regime, with promise for using arrays of massive strongly coupled oscillators for exploring complex interacting systems and sensing. Here, by combining advances in multi-particle optical levitation and cavity-based quantum control, we demonstrate, for the first time, programmable cavity-mediated interactions between nanoparticles in vacuum. The interaction is mediated by photons scattered by spatially separated particles in a cavity, resulting in strong coupling () that does not decay with distance within the cavity mode volume. We investigate the scaling of the interaction strength with cavity detuning and inter-particle separation, and demonstrate the tunability of interactions between different mechanical modes. Our work paves the way towards exploring many-body effects in nanoparticle arrays with programmable cavity-mediated interactions, generating entanglement of motion, and using interacting particle arrays for optomechanical sensing.
Cite
@article{arxiv.2308.14721,
title = {Cavity-mediated long-range interactions in levitated optomechanics},
author = {Jayadev Vijayan and Johannes Piotrowski and Carlos Gonzalez-Ballestero and Kevin Weber and Oriol Romero-Isart and Lukas Novotny},
journal= {arXiv preprint arXiv:2308.14721},
year = {2023}
}
Comments
7 pages, 4 figures, 4 pages in Supplementary, 3 figures in Supplementary