English

Optically induced phonon blockade in an optomechanical system with second-order nonlinearity

Quantum Physics 2018-08-15 v1

Abstract

Quantum control of phonons has being become a focus of attention for developing quantum technologies. Here, we propose a proposal to realize phonon blockade in a quadratically coupled optomechanical system, where a strong nonlinear interaction between photons and phonons can be induced by an external field coherently driving the cavity, and the effective coupling strength is tunable by adjusting the amplitude of the driving field. This optically induced nonlinearity is different from standard methods for realization of phonon blockade, where the nonlinearity is achieved by coupling the mechanical system to superconducting qubits. We both analytically and numerically study the phonon statistical properties via the steady-state solution of the second-order correlation function, and find phonon blockade can be efficiently realized for a large cooperativity of the system, which is achievable based on the optically enhanced nonlinear coupling and high quality mechanical system.

Keywords

Cite

@article{arxiv.1803.03829,
  title  = {Optically induced phonon blockade in an optomechanical system with second-order nonlinearity},
  author = {Hong Xie and Chang-Geng Liao and Xiao Shang and Zhi-Hua Chen and Xiu-Min Lin},
  journal= {arXiv preprint arXiv:1803.03829},
  year   = {2018}
}

Comments

6 pages, 6 figures

R2 v1 2026-06-23T00:48:32.618Z