We have developed a new approach to measuring the spatial position of a single photon. Using fibers of different length, all connected to a single detector allows us to use the high timing precision of single photon avalanche diodes (SPAD) to spatially locate the photon. We have built two 8-element detector arrays to measure the full-field quantum correlations in position, momentum and intermediate bases for photon pairs produced in parametric down conversion. The strength of the position-momentum correlations is found to be an order of magnitude below the classical limit
We demonstrate the use of two high speed avalanche photodiodes in exploring higher order photon corr...
In this project, we present a novel approach to calculate and engineer the photon correlations emerg...
Single photon avalanche diode arrays can provide both the spatial and temporal information of each d...
We have developed a new approach to measuring the spatial position of a single photon. Using fibers ...
We report an eight-element, linear-array, single-photon detector that uses multiple fibers of differ...
use of any of the information contained in it must acknowledge this thesis as the source of the quot...
We present a novel quantum imaging modality based on photon correlation measurement with a single ph...
Using multi-pixel detectors, we demonstrate strong full-field quantum correlations in the position a...
Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and...
In this thesis we explore spatial quantum correlations of high-dimensional multi-photon states. Thes...
Intensity correlation measurements form the basis of many experiments based on spontaneous parametri...
Using a 1GW-1ps pump-laser pulse in parametric down-conversion allows for single-shot detection of s...
Using a 1 GW, 1 ps pump laser pulse in high-gain parametric down conversion allows us to detect sub-...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Measurements of photon temporal correlations have been the mainstay of experiments in quantum optics...
We demonstrate the use of two high speed avalanche photodiodes in exploring higher order photon corr...
In this project, we present a novel approach to calculate and engineer the photon correlations emerg...
Single photon avalanche diode arrays can provide both the spatial and temporal information of each d...
We have developed a new approach to measuring the spatial position of a single photon. Using fibers ...
We report an eight-element, linear-array, single-photon detector that uses multiple fibers of differ...
use of any of the information contained in it must acknowledge this thesis as the source of the quot...
We present a novel quantum imaging modality based on photon correlation measurement with a single ph...
Using multi-pixel detectors, we demonstrate strong full-field quantum correlations in the position a...
Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and...
In this thesis we explore spatial quantum correlations of high-dimensional multi-photon states. Thes...
Intensity correlation measurements form the basis of many experiments based on spontaneous parametri...
Using a 1GW-1ps pump-laser pulse in parametric down-conversion allows for single-shot detection of s...
Using a 1 GW, 1 ps pump laser pulse in high-gain parametric down conversion allows us to detect sub-...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Measurements of photon temporal correlations have been the mainstay of experiments in quantum optics...
We demonstrate the use of two high speed avalanche photodiodes in exploring higher order photon corr...
In this project, we present a novel approach to calculate and engineer the photon correlations emerg...
Single photon avalanche diode arrays can provide both the spatial and temporal information of each d...