Brillouin Optomechanics in Coupled Silicon Microcavities
Abstract
The simultaneous control of optical and mechanical waves has enabled a range of fundamental and technological breakthroughs, from the demonstration of ultra-stable frequency reference devices to the exploration of the quantum-classical boundaries in laser-cooling experiments. More recently, such an opto-mechanical interaction has been observed in integrated nano-waveguides and microcavities in the Brillouin regime, where short-wavelength mechanical modes scatters light at several GHz. Here we engineer coupled optical microcavities spectra to enable a low threshold excitation of mechanical travelling-wave modes through backward stimulated Brillouin scattering. Exploring the backward scattering we propose microcavity designs supporting super high frequency modes ( GHz) an large optomechanical coupling rates ( kHz).
Cite
@article{arxiv.1609.09509,
title = {Brillouin Optomechanics in Coupled Silicon Microcavities},
author = {Yovanny A. V. Espinel and Felipe G. S. Santos and Gustavo O. Luiz and Thiago P. M. Alegre and Gustavo S. Wiederhecker},
journal= {arXiv preprint arXiv:1609.09509},
year = {2020}
}
Comments
main text: 7 pages, 4 figures, accompanies supplmentary information