ABSTRACT: We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitivity, based on an imprinted polymer optical microring. It has an acoustic response of up to 350 MHz at −3 dB and noise-limited detectable pressure as low as 105 Pa in this frequency range. Application of such a detector in photoacoustic imaging leads to improved axial resolving ability compared with using the conventional ultrasound detector, and sub-3 μm axial resolution is achieved, which is more than a 2-fold improve-ment with respect to the reported record. The device’s miniaturized cavity height guarantees its broadband response, and at the same time, its high optical quality factor ensures the detection sensitivity. Our work suggests tha...
Optical detection of ultrasound for photoacoustic imaging provides large bandwidth and high sensitiv...
Better image resolution would expand the frontiers of ultrasound for both clinical diagnostics and m...
Optical ultrasound sensing is a promising technique for the emerging field of biomedical photoacoust...
We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitivity, based...
Abstract—Development of both fundamental research and clini-cal applications of photoacoustic imagin...
Highly sensitive broadband ultrasound detectors are needed to expand the capabilities of biomedical ...
Application of polymer waveguide microring resonators for high-frequency ultrasound detection is pre...
Abstract — Detectors play a vital role in ultrasound sensing and imaging applications. With the rapi...
Low-noise small-size microring ultrasonic detectors for high-resolution photoacoustic imagin
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/98672/1/ApplPhysLett_98_204103.pd
The widely available silicon-on-insulator technology is used to develop a miniaturized ultrasound de...
Silicon photonics is an emerging platform for acoustic sensing, offering exceptional miniaturization...
Optical detection of ultrasound is a promising technique for high frequency imaging arrays. Detectio...
Deep-tissue applications (>1cm) for photoacoustic imaging require high-sensitivity ultrasound transd...
We design and demonstrate a prototype ultrasound sensor based on a photonic micro-ring resonator int...
Optical detection of ultrasound for photoacoustic imaging provides large bandwidth and high sensitiv...
Better image resolution would expand the frontiers of ultrasound for both clinical diagnostics and m...
Optical ultrasound sensing is a promising technique for the emerging field of biomedical photoacoust...
We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitivity, based...
Abstract—Development of both fundamental research and clini-cal applications of photoacoustic imagin...
Highly sensitive broadband ultrasound detectors are needed to expand the capabilities of biomedical ...
Application of polymer waveguide microring resonators for high-frequency ultrasound detection is pre...
Abstract — Detectors play a vital role in ultrasound sensing and imaging applications. With the rapi...
Low-noise small-size microring ultrasonic detectors for high-resolution photoacoustic imagin
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/98672/1/ApplPhysLett_98_204103.pd
The widely available silicon-on-insulator technology is used to develop a miniaturized ultrasound de...
Silicon photonics is an emerging platform for acoustic sensing, offering exceptional miniaturization...
Optical detection of ultrasound is a promising technique for high frequency imaging arrays. Detectio...
Deep-tissue applications (>1cm) for photoacoustic imaging require high-sensitivity ultrasound transd...
We design and demonstrate a prototype ultrasound sensor based on a photonic micro-ring resonator int...
Optical detection of ultrasound for photoacoustic imaging provides large bandwidth and high sensitiv...
Better image resolution would expand the frontiers of ultrasound for both clinical diagnostics and m...
Optical ultrasound sensing is a promising technique for the emerging field of biomedical photoacoust...