Asymmetry-Based Quantum Backaction Suppression in Quadratic Optomechanics
Quantum Physics
2022-08-17 v1 Optics
Abstract
As the field of optomechanics advances, quadratic dispersive coupling (QDC) promise an increasingly feasible class of qualitatively new functionality. However, the leading QDC geometries also generate linear dissipative coupling, and an associated quantum radiation force noise that is detrimental to QDC applications. Here, we propose a simple modification that dramatically reduces this noise without altering the QDC strength. We identify optimal regimes of operation, and discuss advantages within the examples of optical levitation and nondestructive phonon measurement.
Keywords
Cite
@article{arxiv.2203.00631,
title = {Asymmetry-Based Quantum Backaction Suppression in Quadratic Optomechanics},
author = {Vincent Dumont and Hoi-Kwan Lau and Aashish A. Clerk and Jack C. Sankey},
journal= {arXiv preprint arXiv:2203.00631},
year = {2022}
}
Comments
18 pages, 4 figures