High frequency GaAs nano-optomechanical disk resonator
Optics
2015-05-19 v1
Abstract
Optomechanical coupling between a mechanical oscillator and light trapped in a cavity increases when the coupling takes place in a reduced volume. Here we demonstrate a GaAs semiconductor optomechanical disk system where both optical and mechanical energy can be confined in a sub-micron scale interaction volume. We observe giant optomechanical coupling rate up to 100 GHz/nm involving picogram mass mechanical modes with frequency between 100 MHz and 1 GHz. The mechanical modes are singled-out measuring their dispersion as a function of disk geometry. Their Brownian motion is optically resolved with a sensitivity of 10^(-17)m/sqrt(Hz) at room temperature and pressure, approaching the quantum limit imprecision.
Cite
@article{arxiv.1007.3392,
title = {High frequency GaAs nano-optomechanical disk resonator},
author = {Lu Ding and Christophe Baker and Pascale Senellart and Aristide Lemaitre and Sara Ducci and Giuseppe Leo and Ivan Favero},
journal= {arXiv preprint arXiv:1007.3392},
year = {2015}
}
Comments
7 pages, 3 figures