Published July 18, 2011
| Version v1
Journal article
Open
Sub-wavelength phononic crystal liquid sensor
Description
We introduce an acoustic liquid sensor based on phononic crystals consisting of steel plate with an
array of holes filled with liquid. We both theoretically and experimentally demonstrate sensor
properties considering the mechanism of the extraordinary acoustic transmission as underlying
phenomenon. The frequency of this resonant transmission peak is shown to rely on the speed of
sound of the liquid, and the resonant frequency can be used as a measure of speed of sound and
related properties, like concentration of a component in the liquid mixture. The finite-difference
time domain method has been applied for sensor design. Ultrasonic transmission experiments
are performed. Good consistency of the resonant frequency shift has been found between
theoretical results and experiments. The proposed scheme offers a platform for an acoustic liquid sensor.
Files
SubWavelengthPhononicCrystalLiquidSensor_KeZubtsov_JApPhys_2011.pdf
Files
(935.6 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:dd66b995f22cd6b3755ec1f502c838b9
|
935.6 kB | Preview Download |