English

$\mathcal{PT}$-symmetry-breaking enhanced cavity optomechanical magnetometry

Quantum Physics 2020-08-12 v2

Abstract

PT\mathcal{PT}-symmetry-breaking enhanced cavity optomechanical magnetometer is proposed, which is achieved by monitoring the change of intensity of a nonlinear four-wave mixing (FWM) process in a gain-cavity-assisted cavity optomechanical system (COMS). Compared with the traditional single loss COMS, the FWM intensity can be enhanced by two orders of magnitude when the gain-cavity-assisted COMS operates at the PT\mathcal{PT}-symmetry-breaking phase. Meanwhile, the sensitivity of magnetic field sensing can be increased from 10910^{-9}T to 101110^{-11}T. This originally comes from the fact that the effective detuning and decay of loss-cavity can be effectively modified in the PT\mathcal{PT}-symmetry-breaking phase. Our work shows that an ultrahigh-sensitivity magnetometer can be achieved in the PT\mathcal{PT}-symmetry-breaking COMS, which will have wide applications in the field of quantum sensing.

Keywords

Cite

@article{arxiv.2002.10207,
  title  = {$\mathcal{PT}$-symmetry-breaking enhanced cavity optomechanical magnetometry},
  author = {Zhucheng Zhang and Yi-Ping Wang and Xiaoguang Wang},
  journal= {arXiv preprint arXiv:2002.10207},
  year   = {2020}
}

Comments

6 pages, 5 figures

R2 v1 2026-06-23T13:51:31.984Z