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Opto-mechanical oscillator in a nanoliter droplet

Academic Article
Publication Date:
2018
abstract:
Droplets are very simple physical systems, whereby surface tension shapes liquids into ideal opto-mechanical devices. This has recently enabled low-viscosity liquid samples to serve as miniature acoustic resonators harnessing optical generation of bulk vibrations, capillaries, or surface waves. Uniquely, a simple room-temperature pendant droplet can be activated as a hypersound-laser emitter when illuminated by a free-space, low-power visible laser thanks to stimulated Brillouin scattering of optical and acoustic whispering-gallery modes. Here, we demonstrate continuous operation of a liquid polymer opto-mechanical resonator and characterize its quality factor and long-term frequency stability. Our results point to the feasibility of all-liquid micro-mechanical oscillators working in the 50-100 MHz range. The stimulated generation of high-quality surface waves on nanoliter droplets gives momentum to new optical schemes for characterization of material viscous-elastic properties, laboratory investigation of atmospheric phenomena, and mass sensing for direct analysis of biological fluids based on ultrasound-hypersound coherent generation and detection. (C) 2018 Optical Society of America
Iris type:
01.01 Articolo in rivista
Keywords:
Microcavities; Scattering; stimu-lated Brillouin; Optical microelectromechanical devices
List of contributors:
DE NATALE, Paolo; Gagliardi, Gianluca; Malara, Pietro; Avino, Saverio; Giorgini, Antonio
Authors of the University:
AVINO SAVERIO
DE NATALE PAOLO
GAGLIARDI GIANLUCA
GIORGINI ANTONIO
MALARA PIETRO
Handle:
https://iris.cnr.it/handle/20.500.14243/427897
Published in:
OPTICS LETTERS
Journal
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