Optical techniques for ultrasonic measurements present several advantages over conventional piezoelectric methods. First, they are remote sensing techniques and can be, for example, used for the inspection of materials at elevated temperature or products moving on a production line. Secondly, surfaces of complex shape can be easily probed since these techniques work with scattered light. For specific applications, these advantages compensate the usually lower sensitivity of optical techniques
In spite of its obvious advantages over conventional contact and immersion techniques, laser interfe...
Perhaps the greatest fundamental deterrent to the application of current laser ultrasonic technology...
Laser ultrasonics has been the focus of several research efforts over the last two decades. The main...
The generation and the detection of ultrasound at distance by lasers present many advantages over co...
The optical detection of transient surface motion has many practical applications which include, in ...
A novel optical sensor for the detection of ultrasonic motion has been recently developed. It allows...
Ultrasonic techniques are widely used in industry for thickness gauging, flaw detection and material...
Increased use of advanced materials and more stringent requirements for process and quality control ...
The trend toward intelligent manufacturing has produced an increase in the need for sensors which ca...
For NDE applications, the remote generation and detection of ultrasound by laser present many advant...
Laser based NDE techniques offer a potential solution to many of the NDE problems found in the appli...
Ultrasound is today one of the commonest nondestructive methods in industry, in particular for the i...
Ultrasound-modulated optical imaging (or tomography) is an emerging biodiagnostic technique which pr...
To compliment non-contacting ultrasonic generation using lasers, it is ideal to have a remote, non-c...
We here expose theoretical and experimental results on homodyne detection using near-infrared laser ...
In spite of its obvious advantages over conventional contact and immersion techniques, laser interfe...
Perhaps the greatest fundamental deterrent to the application of current laser ultrasonic technology...
Laser ultrasonics has been the focus of several research efforts over the last two decades. The main...
The generation and the detection of ultrasound at distance by lasers present many advantages over co...
The optical detection of transient surface motion has many practical applications which include, in ...
A novel optical sensor for the detection of ultrasonic motion has been recently developed. It allows...
Ultrasonic techniques are widely used in industry for thickness gauging, flaw detection and material...
Increased use of advanced materials and more stringent requirements for process and quality control ...
The trend toward intelligent manufacturing has produced an increase in the need for sensors which ca...
For NDE applications, the remote generation and detection of ultrasound by laser present many advant...
Laser based NDE techniques offer a potential solution to many of the NDE problems found in the appli...
Ultrasound is today one of the commonest nondestructive methods in industry, in particular for the i...
Ultrasound-modulated optical imaging (or tomography) is an emerging biodiagnostic technique which pr...
To compliment non-contacting ultrasonic generation using lasers, it is ideal to have a remote, non-c...
We here expose theoretical and experimental results on homodyne detection using near-infrared laser ...
In spite of its obvious advantages over conventional contact and immersion techniques, laser interfe...
Perhaps the greatest fundamental deterrent to the application of current laser ultrasonic technology...
Laser ultrasonics has been the focus of several research efforts over the last two decades. The main...