Abstract—Correlated photons can be used to measure the quantum efficiency of photon counting photodetectors without ties to any externally calibrated standards. We present a study of measurement systematics aimed at reducing the measurement uncertainties to the 0.1 % level, and developing a robust measure-ment protocol. Index Terms—Photodetectors, quantum efficiency, radiometry. I
The correlated photons source is obtained from the parametric down conversion of photons generated ...
The aim of this paper was to illustrate the value of the new metric effective detective quantum effi...
The black body remains the most prominent source of light for absolute radiometry. Its main alternat...
Abstract. Correlated photons offer a direct means of calibrating detector quantum efficiency in the ...
Well characterized photon number resolving detectors are a requirement for many applications rangin...
We address the reconstruction of photon statistics using realistic photodetectors having low quantum...
We realize and test in experiment a method recently proposed for measuring absolute quantum efficien...
Engineering apparatus that harness quantum theory promises to offer practical advantages over curren...
The aim of this review paper is to enlighten some recent progresses in quantum optical metrology in ...
Single photon counting, based on single photon sources and detectors, is a key ingredient for certai...
In this review we present the potentialities and the achievements of the use of non-classical photon...
We evaluate photodetectors for use in a Compton Coincidence apparatus designed for measuring scintil...
Quantum efficiency is a key quantity that describes the performance of light-emitting materials and ...
The paper considers a block diagram of a photodetection system based on a new version of the four-ch...
We report testing of the new absolute method of photodetector calibration based on the difference-si...
The correlated photons source is obtained from the parametric down conversion of photons generated ...
The aim of this paper was to illustrate the value of the new metric effective detective quantum effi...
The black body remains the most prominent source of light for absolute radiometry. Its main alternat...
Abstract. Correlated photons offer a direct means of calibrating detector quantum efficiency in the ...
Well characterized photon number resolving detectors are a requirement for many applications rangin...
We address the reconstruction of photon statistics using realistic photodetectors having low quantum...
We realize and test in experiment a method recently proposed for measuring absolute quantum efficien...
Engineering apparatus that harness quantum theory promises to offer practical advantages over curren...
The aim of this review paper is to enlighten some recent progresses in quantum optical metrology in ...
Single photon counting, based on single photon sources and detectors, is a key ingredient for certai...
In this review we present the potentialities and the achievements of the use of non-classical photon...
We evaluate photodetectors for use in a Compton Coincidence apparatus designed for measuring scintil...
Quantum efficiency is a key quantity that describes the performance of light-emitting materials and ...
The paper considers a block diagram of a photodetection system based on a new version of the four-ch...
We report testing of the new absolute method of photodetector calibration based on the difference-si...
The correlated photons source is obtained from the parametric down conversion of photons generated ...
The aim of this paper was to illustrate the value of the new metric effective detective quantum effi...
The black body remains the most prominent source of light for absolute radiometry. Its main alternat...