Single-photon lidar (SPL) is a promising technology for depth measurement at long range or from weak reflectors because of the sensitivity to extremely low light levels. However, constraints on the timing resolution of existing arrays of single-photon avalanche diode (SPAD) detectors limit the precision of resulting depth estimates. In this work, we describe an implementation of subtractively-dithered SPL that can recover high-resolution depth estimates despite the coarse resolution of the detector. Subtractively-dithered measurement is achieved by adding programmable delays into the photon timing circuitry that introduce relative time shifts between the illumination and detection that are shorter than the time bin duration. Careful modelin...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
We demonstrate a compressed sensing, photon counting lidar system based on the single-pixel camera. ...
We have used an InGaAs/InP single-photon avalanche diode detector module in conjunction with a time-...
We present a scanning light detection and ranging (LIDAR) system incorporating an individual Ge-on-S...
The ability to measure and record high-resolution depth images at long stand-off distances is import...
Lidar is an increasingly prevalent technology for depth sensing, with applications including scienti...
Non-line-of-sight (NLOS) imaging has the ability to reconstruct hidden objects from indirect light p...
Single-photon detection technologies are of high relevance to light detection and ranging (LiDAR) a...
By using time-of-flight information encoded in multiply scattered light, it is possible to reconstr...
<p>Fast depth imaging of noncooperative targets at a range of up to 900 m is demonstrated based on t...
Depth sensing is an increasingly important feature in many applications of consumer, automotive, aug...
The Time-Correlated Single-Photon Counting (TCSPC) technique has emerged as a candidate approach fo...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
A remote-sensing system that can determine the position of hidden objects has applications in many c...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
We demonstrate a compressed sensing, photon counting lidar system based on the single-pixel camera. ...
We have used an InGaAs/InP single-photon avalanche diode detector module in conjunction with a time-...
We present a scanning light detection and ranging (LIDAR) system incorporating an individual Ge-on-S...
The ability to measure and record high-resolution depth images at long stand-off distances is import...
Lidar is an increasingly prevalent technology for depth sensing, with applications including scienti...
Non-line-of-sight (NLOS) imaging has the ability to reconstruct hidden objects from indirect light p...
Single-photon detection technologies are of high relevance to light detection and ranging (LiDAR) a...
By using time-of-flight information encoded in multiply scattered light, it is possible to reconstr...
<p>Fast depth imaging of noncooperative targets at a range of up to 900 m is demonstrated based on t...
Depth sensing is an increasingly important feature in many applications of consumer, automotive, aug...
The Time-Correlated Single-Photon Counting (TCSPC) technique has emerged as a candidate approach fo...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
A remote-sensing system that can determine the position of hidden objects has applications in many c...
We present an optical depth imaging system suitable for highly scattering underwater environments. T...
We demonstrate a compressed sensing, photon counting lidar system based on the single-pixel camera. ...
We have used an InGaAs/InP single-photon avalanche diode detector module in conjunction with a time-...