Acousto-optic effects are demonstrated in polymer dispersed liquid crystal (PDLC) films, showing promise for applications in ultrasound sensing. The PDLC films are used to image two displacement profiles of an air-coupled flexural transducers resonant modes at 295 kHz and 730 kHz. Results are confirmed using laser vibrometry. The regions on the transducers with the largest displacements are clearly imaged by the PDLC films, with the resolution agreeing well with laser vibrometry scanning. Imaging takes significantly less time than a scanning system (switching time of a few seconds, as compared to 8 hours for laser vibrometry). Heating effects are carefully monitored using thermal imaging, and are found not to be the main cause of PDLC clea...
Ultrasound modulation of light can be used to image optical properties in highly diffusive media suc...
Measurements of ultrasonically induced birefringence and opacity were performed on oriented layers o...
This work demonstrates the detections and mappings of a solid object using a thermally tunable solid...
The acousto-optic effect in liquid crystals (LCs) has previously been exploited to build large area ...
Polymer dispersed liquid crystals (PDLCs) have been shown to be sensitive to ultrasound through the ...
Abstract: Polymer dispersed liquid crystals (PDLCs) are composite materials in which liquid crystall...
Optical detection of ultrasound is a promising technique for high frequency imaging arrays. Detectio...
High frequency two-dimensional phased arrays for ultrasound microscopy are difficult to construct us...
The acousto-optical sensing (AOS) of a turbid medium is based on the interaction of multiply-scatter...
A method to estimate orientation direction of liquid crystal molecules three-dimensionally under ult...
Cholesteric liquid crystals were applied to a polyethylene membrane to form a liquid crystal ultraso...
Acousto-optic (AO) sensing and imaging (AOI) is a dual-wave modality that combines ultrasound with ...
Pulsed lasers can generate ultrasound from stresses due to rapid thermal expansion. In this low powe...
The thermoelastic effect was used to produce high-frequency, broadband ultrasound in water. A pulsed...
Techniques are being developed worldwide for non-contact ultrasonic inspection of composite material...
Ultrasound modulation of light can be used to image optical properties in highly diffusive media suc...
Measurements of ultrasonically induced birefringence and opacity were performed on oriented layers o...
This work demonstrates the detections and mappings of a solid object using a thermally tunable solid...
The acousto-optic effect in liquid crystals (LCs) has previously been exploited to build large area ...
Polymer dispersed liquid crystals (PDLCs) have been shown to be sensitive to ultrasound through the ...
Abstract: Polymer dispersed liquid crystals (PDLCs) are composite materials in which liquid crystall...
Optical detection of ultrasound is a promising technique for high frequency imaging arrays. Detectio...
High frequency two-dimensional phased arrays for ultrasound microscopy are difficult to construct us...
The acousto-optical sensing (AOS) of a turbid medium is based on the interaction of multiply-scatter...
A method to estimate orientation direction of liquid crystal molecules three-dimensionally under ult...
Cholesteric liquid crystals were applied to a polyethylene membrane to form a liquid crystal ultraso...
Acousto-optic (AO) sensing and imaging (AOI) is a dual-wave modality that combines ultrasound with ...
Pulsed lasers can generate ultrasound from stresses due to rapid thermal expansion. In this low powe...
The thermoelastic effect was used to produce high-frequency, broadband ultrasound in water. A pulsed...
Techniques are being developed worldwide for non-contact ultrasonic inspection of composite material...
Ultrasound modulation of light can be used to image optical properties in highly diffusive media suc...
Measurements of ultrasonically induced birefringence and opacity were performed on oriented layers o...
This work demonstrates the detections and mappings of a solid object using a thermally tunable solid...