Acoustically tuneable optical transmission through a subwavelength hole with a bubble
Optics
2017-03-22 v1 Other Condensed Matter
Biological Physics
Fluid Dynamics
Abstract
Efficient manipulation of light with sound in subwavelength-sized volumes is important for applications in photonics, phononics and biophysics, but remains elusive. We theoretically demonstrate the control of light with MHz-range ultrasound in a subwavelength, 300 nm wide water-filled hole with a 100 nm radius air bubble. Ultrasound-driven pulsations of the bubble modulate the effective refractive index of the hole aperture, which gives rise to spectral tuning of light transmission through the hole. This control mechanism opens up novel opportunities for tuneable acousto-optic and optomechanical metamaterials, and all-optical ultrasound transduction.
Cite
@article{arxiv.1610.04721,
title = {Acoustically tuneable optical transmission through a subwavelength hole with a bubble},
author = {Ivan S. Maksymov and Andrew D. Greentree},
journal= {arXiv preprint arXiv:1610.04721},
year = {2017}
}
Comments
4 pages, 6 figures