English

Phase-controlled asymmetric optomechanical entanglement against optical backscattering

Quantum Physics 2023-02-14 v3 Optics

Abstract

Quantum entanglement plays a key role in both understanding the fundamental aspects of quantum physics and realizing various quantum devices for practical applications. Here we propose how to achieve coherent switch of optomechanical entanglement in an optical whispering-gallery-mode resonator, by tuning the phase difference of the driving lasers. We find that the optomechanical entanglement and the associated two-mode quantum squeezing can be well tuned in a highly asymmetric way, providing an efficient way to protect and enhance quantum entanglement against optical backscattering, in comparison with conventional symmetric devices. Our findings shed a new light on improving the performance of various quantum devices in practical noisy environment, which is crucial in such a wide range of applications as noise-tolerant quantum processing and the backscattering-immune quantum metrology.

Keywords

Cite

@article{arxiv.2209.12508,
  title  = {Phase-controlled asymmetric optomechanical entanglement against optical backscattering},
  author = {Jing-Xue Liu and Ya-Feng Jiao and Ying Li and Xun-Wei Xu and Qiong-Yi He and Hui Jing},
  journal= {arXiv preprint arXiv:2209.12508},
  year   = {2023}
}

Comments

11 pages, 6 figures

R2 v1 2026-06-28T02:05:06.062Z