Deep sub-wavelength localization of light and sound in dielectric resonators
Optics
2022-04-13 v1 Applied Physics
Abstract
Optomechanical crystals provide coupling between phonons and photons by confining them to commensurate wavelength-scale dimensions. We present a new concept for designing optomechanical crystals capable of achieving unprecedented coupling rates by confining optical and mechanical waves to deep sub-wavelength dimensions. Our design is based on a dielectric bowtie unit cell with an effective optical/mechanical mode volume of /. We present results from numerical modeling, indicating a single-photon optomechanical coupling of 2.2 MHz with experimentally viable parameters. Monte Carlo simulations are used to demonstrate the design's robustness against fabrication disorder.
Keywords
Cite
@article{arxiv.2202.00833,
title = {Deep sub-wavelength localization of light and sound in dielectric resonators},
author = {Alkim Bozkurt and Chaitali Joshi and Mohammad Mirhosseini},
journal= {arXiv preprint arXiv:2202.00833},
year = {2022}
}