International audienceThis study introduces optical feedback interferometry as a simple and effective technique for the two-dimensional visualisation of acoustic fields. We present imaging results for several pressure distributions including those for progressive waves, standing waves, as well as the diffraction and interference patterns of the acoustic waves. The proposed solution has the distinct advantage of extreme optical simplicity and robustness thus opening the way to a low cost acoustic field imaging system based on mass produced laser diodes
Acousto-optical measurement inside transparent media is a well known non invasive method for acousti...
A scanning homodyne Michelson interferometer is constructed for two-dimensional imaging of high-freq...
The objective of this work is to show that our optical method for measuring acoustic pressure is in ...
International audienceThis study introduces optical feedback interferometry as a simple and effectiv...
International audienceThis paper presents an experimental technique for two-dimensional imaging of d...
International audienceSound can be described as the propagation of pressure variations in compressib...
The visualization of physical phenomena is one of the challenges that researchers are trying to over...
International audienceMeasurement and 3D imaging of acoustic waves through the acousto-optic effect ...
International audienceWe present a photon noise and diffraction limited imaging method combining the...
Obtaining detailed views of complex acoustic and ultrasonic fields is made difficult by the need to ...
National audienceThe visualization of physical phenomena is one of the challenges that researchers a...
In this PhD we present the development of a Class 1 microphone using Optical Feedback Interferometry...
The use of optical methods to measure stress waves has been pursued as an alternative to piezoelectr...
In this PhD we present the development of a Class 1 microphone using Optical Feedback Interferometry...
A comprehensive study of the generation and optical imaging of highly localized acoustic fields is p...
Acousto-optical measurement inside transparent media is a well known non invasive method for acousti...
A scanning homodyne Michelson interferometer is constructed for two-dimensional imaging of high-freq...
The objective of this work is to show that our optical method for measuring acoustic pressure is in ...
International audienceThis study introduces optical feedback interferometry as a simple and effectiv...
International audienceThis paper presents an experimental technique for two-dimensional imaging of d...
International audienceSound can be described as the propagation of pressure variations in compressib...
The visualization of physical phenomena is one of the challenges that researchers are trying to over...
International audienceMeasurement and 3D imaging of acoustic waves through the acousto-optic effect ...
International audienceWe present a photon noise and diffraction limited imaging method combining the...
Obtaining detailed views of complex acoustic and ultrasonic fields is made difficult by the need to ...
National audienceThe visualization of physical phenomena is one of the challenges that researchers a...
In this PhD we present the development of a Class 1 microphone using Optical Feedback Interferometry...
The use of optical methods to measure stress waves has been pursued as an alternative to piezoelectr...
In this PhD we present the development of a Class 1 microphone using Optical Feedback Interferometry...
A comprehensive study of the generation and optical imaging of highly localized acoustic fields is p...
Acousto-optical measurement inside transparent media is a well known non invasive method for acousti...
A scanning homodyne Michelson interferometer is constructed for two-dimensional imaging of high-freq...
The objective of this work is to show that our optical method for measuring acoustic pressure is in ...