English

Levitated cavity optomechanics in high vacuum

Optics 2020-02-28 v1

Abstract

We report dispersive coupling of an optically trapped silica nanoparticle (143 143~nm diameter) to the field of a driven Fabry-Perot cavity in high vacuum (4.3×106 4.3\times 10^{-6}~mbar). We demonstrate nanometer-level control in positioning the particle with respect to the intensity distribution of the cavity field, which allows access to linear, quadratic and tertiary optomechanical interactions in the resolved sideband regime. We determine all relevant coupling rates of the system, i.e. mechanical and optical losses as well as optomechanical interaction, and obtain a quantum cooperativity of CQ=0.01C_Q = 0.01. Based on the presented performance the regime of strong cooperativity (CQ>1C_Q > 1) is clearly within reach by further decreasing the mode volume of the cavity.

Keywords

Cite

@article{arxiv.1902.06605,
  title  = {Levitated cavity optomechanics in high vacuum},
  author = {Uroš Delić and David Grass and Manuel Reisenbauer and Tobias Damm and Martin Weitz and Nikolai Kiesel and Markus Aspelmeyer},
  journal= {arXiv preprint arXiv:1902.06605},
  year   = {2020}
}
R2 v1 2026-06-23T07:43:47.501Z