English

Brillouin cavity optomechanics with microfluidic devices

Optics 2013-06-11 v1

Abstract

Cavity optomechanics allows the parametric coupling of phonon- and photon-modes in microresonators and is presently investigated in a broad variety of solid-state systems. Optomechanics with superfluids has been proposed as a path towards ultra-low optical- and mechanical-dissipation. However, there have been no optomechanics experiments reported with non-solid phases of matter. Direct liquid immersion of optomechanics experiments is challenging since the acoustic energy simply leaks out to the higher-impedance liquid surrounding the device. Conversely, here we confine liquids inside hollow resonators thereby enabling optical excitation of mechanical whispering-gallery modes at frequencies ranging from 2 MHz to 11,000 MHz (for example, with mechanical Q = 4700 at 99 MHz). Vibrations are sustained even when we increase the fluid viscosity to be higher than that of blood. Our device enables optomechanical investigation with liquids, while light is conventionally coupled from the outer dry side of the capillary, and liquids are provided by means of a standard microfluidic inlet.

Keywords

Cite

@article{arxiv.1302.1949,
  title  = {Brillouin cavity optomechanics with microfluidic devices},
  author = {Gaurav Bahl and Kyu Hyun Kim and Wonsuk Lee and Jing Liu and Xudong Fan and Tal Carmon},
  journal= {arXiv preprint arXiv:1302.1949},
  year   = {2013}
}

Comments

15 pages, 6 figures

R2 v1 2026-06-21T23:23:01.113Z