Silicon photonics is an emerging platform for acoustic sensing, offering exceptional miniaturization and sensitivity. While efforts have focused on silicon-based resonators, silicon nitride resonators can potentially achieve higher Q-factors, further enhancing sensitivity. In this work, a 30 µm silicon nitride microring resonator was fabricated and coated with an elastomer to optimize acoustic sensitivity and signal fidelity. The resonator was characterized acoustically, and its capability for optoacoustic tomography was demonstrated. An acoustic bandwidth of 120 MHz and a noise-equivalent pressure of ∼ 7 mPa/Hz1/2 were demonstrated. The spatially dependent impulse response agreed with theoretical predictions, and spurious acoustic signals,...
We experimentally demonstrate a high-Q ultrathin silicon nitride microring resonator operating at wa...
International audienceThis work reports the design and fabrication of silicon nitride-based microres...
Ultrasound sensors have wide applications across science and technology. However, improved sensitivi...
The recent development of ultrasound sensing using the silicon-photonics platform has enabled super-...
The recent development of ultrasound sensing using the silicon-photonics platform has enabled super-...
We demonstrated that photonic micro-ring resonators can be used in micro-machined ultrasound microph...
In order to meet the requirements of having a small structure, a wide frequency band, and high sensi...
We design and demonstrate a prototype ultrasound sensor based on a photonic micro-ring resonator int...
ABSTRACT: We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitiv...
The recent development of ultrasound sensing using the silicon-photonics platform has enabled super-...
Ultrasonography1 and photoacoustic2,3 (optoacoustic) tomography have recently seen great advances in...
The widely available silicon-on-insulator technology is used to develop a miniaturized ultrasound de...
Silicon photonic resonators, implemented using silicon-on-insulator substrates, are promising for nu...
We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitivity, based...
With the increasing use of ultrasonography, especially in medical imaging, novel fabrication techniq...
We experimentally demonstrate a high-Q ultrathin silicon nitride microring resonator operating at wa...
International audienceThis work reports the design and fabrication of silicon nitride-based microres...
Ultrasound sensors have wide applications across science and technology. However, improved sensitivi...
The recent development of ultrasound sensing using the silicon-photonics platform has enabled super-...
The recent development of ultrasound sensing using the silicon-photonics platform has enabled super-...
We demonstrated that photonic micro-ring resonators can be used in micro-machined ultrasound microph...
In order to meet the requirements of having a small structure, a wide frequency band, and high sensi...
We design and demonstrate a prototype ultrasound sensor based on a photonic micro-ring resonator int...
ABSTRACT: We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitiv...
The recent development of ultrasound sensing using the silicon-photonics platform has enabled super-...
Ultrasonography1 and photoacoustic2,3 (optoacoustic) tomography have recently seen great advances in...
The widely available silicon-on-insulator technology is used to develop a miniaturized ultrasound de...
Silicon photonic resonators, implemented using silicon-on-insulator substrates, are promising for nu...
We demonstrate an ultrasonic detector with unprecedented broad bandwidth and high sensitivity, based...
With the increasing use of ultrasonography, especially in medical imaging, novel fabrication techniq...
We experimentally demonstrate a high-Q ultrathin silicon nitride microring resonator operating at wa...
International audienceThis work reports the design and fabrication of silicon nitride-based microres...
Ultrasound sensors have wide applications across science and technology. However, improved sensitivi...