We present an optical depth imaging system suitable for highly scattering underwater environments. The system used the time-correlated single-photon counting (TCSPC) technique and the time-of-flight approach to obtain depth profiles. The single-photon detection was provided by a linear array of single-photon avalanche diode (SPAD) detectors fabricated in a customized silicon fabrication technology for optimized efficiency, dark count rate, and jitter performance. The bi-static transceiver comprised a pulsed laser diode source with central wavelength 670 nm, a linear array of 16 × 1 Si-SPAD detectors, with a dedicated TCSPC acquisition module. Cylindrical lenses were used to collect the light scattered by the target and image it onto the sen...
Single-photon detection technologies are of high relevance to light detection and ranging (LiDAR) a...
Combined 2D imaging and 3D ranging sensors provide useful information for both long (some kms) and s...
We report on the design and characterization of a multipurpose 64 times 32 CMOS single-photon avalan...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
We investigate three-dimensional profiling of targets in highly scattering underwater environments, ...
Time-correlated single-photon counting (TCSPC) has been established as the preferred detection appro...
This Thesis investigates the potential of a single-photon depth profiling system for imaging in hig...
Recent developments on Single Photon Avalanche Diodes (SPADs) have opened the way to the design of s...
We present a scanning light detection and ranging (LIDAR) system incorporating an individual Ge-on-S...
This dissertation describes the development of the first CMOS single photon avalanche diode (SPAD) f...
An avalanche photodiode array uses single-photon counting to perform time-of-flight range-finding on...
Single-photon detection technologies are of high relevance to light detection and ranging (LiDAR) a...
Combined 2D imaging and 3D ranging sensors provide useful information for both long (some kms) and s...
We report on the design and characterization of a multipurpose 64 times 32 CMOS single-photon avalan...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
We investigate three-dimensional profiling of targets in highly scattering underwater environments, ...
Time-correlated single-photon counting (TCSPC) has been established as the preferred detection appro...
This Thesis investigates the potential of a single-photon depth profiling system for imaging in hig...
Recent developments on Single Photon Avalanche Diodes (SPADs) have opened the way to the design of s...
We present a scanning light detection and ranging (LIDAR) system incorporating an individual Ge-on-S...
This dissertation describes the development of the first CMOS single photon avalanche diode (SPAD) f...
An avalanche photodiode array uses single-photon counting to perform time-of-flight range-finding on...
Single-photon detection technologies are of high relevance to light detection and ranging (LiDAR) a...
Combined 2D imaging and 3D ranging sensors provide useful information for both long (some kms) and s...
We report on the design and characterization of a multipurpose 64 times 32 CMOS single-photon avalan...