The production of conditional quantum states and quantum operations based on the result of measurement is now seen as a key tool in quantum information and metrology. We propose a different type of photon number detector. It functions nondeterministically, but when successful, it has high fidelity. The detector, which makes use of an n-photon auxiliary Fock state and high efficiency homodyne detection, allows a tunable trade-off between fidelity and probability. By sacrificing probability of operation, an excellent approximation to a photon-number detector is achieved
International audienceDiscriminating between Fock states with a high degree of accuracy is a desirab...
We propose a setup capable of generating Fock states of a single mode radiation field. The scheme is...
The nonlinearity of a conditional photon-counting measurement can be used to "de-Gaussify" a Gaussia...
In this thesis, we demonstrate an array of photodetection theory and techniques bridging the tradit...
The nonlinearity of a conditional photon-counting measurement can be used to "de-Gaussify" a Gaussia...
The fidelity of postselecting devices based on direct photon number detection can be significantly i...
Macroscopic quantum phenomena, such as observed in superfluids and superconductors, have led to prom...
We experimentally investigate a method of directly characterizing the photon number distribution of ...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
Photon statistics of an optical field can be used for quantum optical sensing in low light level sce...
We study the properties of a photodetector that has a numberresolving capability. In the absence of ...
The output of a photodetector consists of a current pulse whose charge has the statistical distribut...
Single-photons play an important role in emerging quantum technologies and information processing. A...
We address state reconstruction by photon-number-resolving detectors, and demonstrate that they may ...
Optical quantum-nondemolition devices can provide essential tools for quantum information processing...
International audienceDiscriminating between Fock states with a high degree of accuracy is a desirab...
We propose a setup capable of generating Fock states of a single mode radiation field. The scheme is...
The nonlinearity of a conditional photon-counting measurement can be used to "de-Gaussify" a Gaussia...
In this thesis, we demonstrate an array of photodetection theory and techniques bridging the tradit...
The nonlinearity of a conditional photon-counting measurement can be used to "de-Gaussify" a Gaussia...
The fidelity of postselecting devices based on direct photon number detection can be significantly i...
Macroscopic quantum phenomena, such as observed in superfluids and superconductors, have led to prom...
We experimentally investigate a method of directly characterizing the photon number distribution of ...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
Photon statistics of an optical field can be used for quantum optical sensing in low light level sce...
We study the properties of a photodetector that has a numberresolving capability. In the absence of ...
The output of a photodetector consists of a current pulse whose charge has the statistical distribut...
Single-photons play an important role in emerging quantum technologies and information processing. A...
We address state reconstruction by photon-number-resolving detectors, and demonstrate that they may ...
Optical quantum-nondemolition devices can provide essential tools for quantum information processing...
International audienceDiscriminating between Fock states with a high degree of accuracy is a desirab...
We propose a setup capable of generating Fock states of a single mode radiation field. The scheme is...
The nonlinearity of a conditional photon-counting measurement can be used to "de-Gaussify" a Gaussia...