We experimentally investigate the non-Gaussian features of the phase-randomized coherent states, a class of states exploited in communication channels and in decoy state-based quantum key distribution protocols. In particular, we reconstruct their phase-insensitive Wigner functions and quantify their non-Gaussianity. The measurements are performed in the mesoscopic photon-number domain by means of a direct detection scheme involving linear detectors. \ua9 2012 Optical Society of America
We address detection of quantum non-Gaussian states, i.e., nonclassical states that cannot be expres...
We introduce a family of criteria to detect quantum non-Gaussian states of a harmonic oscillator, th...
Gaussian and Non-Gaussian operations on non-Gaussian state: engineering non-Gaussianity Abstract: Mu...
We experimentally investigate the non-Gaussian features of the phase-randomized coherent states, a c...
We present the experimental investigation of the non-Gaussian nature of some mixtures of Fock states...
We present the experimental investigation of the non-Gaussian nature of some mixtures of Fock states...
We present the full characterization of phase-randomized or phase-averaged coherent states, a class ...
The representation of quantum states via phase-space functions constitutes an intuitive technique to...
Multiple photon subtraction applied to a displaced phase-averaged coherent state, which is a non-Gau...
Multiple photon subtraction applied to a displaced phase-averaged coherent state, which is a non-Gau...
Gaussian states and measurements collectively are not powerful-enough resources for quantum computin...
Non-Gaussian states and processes are useful resources in quantum information with continuous variab...
Non-Gaussianity is a resource for Quantum Information. By performing con- ditional measurements on c...
We address detection of quantum non-Gaussian states, i.e., nonclassical states that cannot be expres...
We introduce a family of criteria to detect quantum non-Gaussian states of a harmonic oscillator, th...
Gaussian and Non-Gaussian operations on non-Gaussian state: engineering non-Gaussianity Abstract: Mu...
We experimentally investigate the non-Gaussian features of the phase-randomized coherent states, a c...
We present the experimental investigation of the non-Gaussian nature of some mixtures of Fock states...
We present the experimental investigation of the non-Gaussian nature of some mixtures of Fock states...
We present the full characterization of phase-randomized or phase-averaged coherent states, a class ...
The representation of quantum states via phase-space functions constitutes an intuitive technique to...
Multiple photon subtraction applied to a displaced phase-averaged coherent state, which is a non-Gau...
Multiple photon subtraction applied to a displaced phase-averaged coherent state, which is a non-Gau...
Gaussian states and measurements collectively are not powerful-enough resources for quantum computin...
Non-Gaussian states and processes are useful resources in quantum information with continuous variab...
Non-Gaussianity is a resource for Quantum Information. By performing con- ditional measurements on c...
We address detection of quantum non-Gaussian states, i.e., nonclassical states that cannot be expres...
We introduce a family of criteria to detect quantum non-Gaussian states of a harmonic oscillator, th...
Gaussian and Non-Gaussian operations on non-Gaussian state: engineering non-Gaussianity Abstract: Mu...