English

Multimode optomechanical dynamics in a cavity with avoided crossings

Quantum Physics 2015-06-18 v2 Optics

Abstract

Cavity optomechanics offers powerful methods for controlling optical fields and mechanical motion. A number of proposals have predicted that this control can be extended considerably in devices where multiple cavity modes couple to each other via the motion of a single mechanical oscillator. Here we study the dynamical properties of such a multimode optomechanical device, in which the coupling between cavity modes results from mechanically-induced avoided crossings in the cavity's spectrum. Near the avoided crossings we find that the optical spring shows distinct features that arise from the interaction between cavity modes. Precisely at an avoided crossing, we show that the particular form of the optical spring provides a classical analog of a quantum-nondemolition measurement of the intracavity photon number. The mechanical oscillator's Brownian motion, an important source of noise in these measurements, is minimized by operating the device at cryogenic temperature (500 mK).

Keywords

Cite

@article{arxiv.1401.2968,
  title  = {Multimode optomechanical dynamics in a cavity with avoided crossings},
  author = {D. Lee and M. Underwood and D. Mason and A. B. Shkarin and S. W. Hoch and J. G. E. Harris},
  journal= {arXiv preprint arXiv:1401.2968},
  year   = {2015}
}

Comments

21 pages, 5 figures, 14 pages of supplementary info

R2 v1 2026-06-22T02:44:22.370Z