Characterization and modeling of Fabry-Perot ultrasound sensors with hard dielectric mirrors for photoacoustic imaging

A Fabry-Perot ultrasound sensor with nonhygroscopic dielectric mirrors made out of Ta O and SiO for use in photoacoustic tomography is described. The sensor offers flat frequency response up to 36 MHz, low noise-equivalent pressure (70 Pa), and near-omnidirectional response up to 20 MHz as well as o...

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Veröffentlicht in:Applied Optics 2017-06, Vol.56 (17), p.5039-5046
Hauptverfasser: Buchmann, Jens, Guggenheim, James, Zhang, Edward, Scharfenorth, Chris, Spannekrebs, Bastian, Villringer, Claus, Laufer, Jan
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Sprache:eng
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Zusammenfassung:A Fabry-Perot ultrasound sensor with nonhygroscopic dielectric mirrors made out of Ta O and SiO for use in photoacoustic tomography is described. The sensor offers flat frequency response up to 36 MHz, low noise-equivalent pressure (70 Pa), and near-omnidirectional response up to 20 MHz as well as optical transparency for near-infrared illumination. A numerical model was developed to predict its frequency response, and the results were validated experimentally. An image of the human palm was acquired to demonstrate in vivo imaging capabilities.
ISSN:0003-6935
2155-3165
1539-4522
DOI:10.1364/AO.56.005039