It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of Gaussian-modulated continuous-variable quantum key distribution (CV-QKD) in noisy and long-distance regimes of operation. Here, we extend this result to a {\em non-Gaussian} CV-QKD protocol with discrete modulation. We show that, by using a proper setting, the use of quantum scissors in the receiver of such discrete-modulation CV-QKD protocols would allow us to achieve positive secret key rates at high loss and high excess noise regimes of operation, which would have been otherwise impossible. This also keeps the prospect of running discrete-modulation CV-QKD over CV quantum repeaters alive
Quantum key distribution (QKD) is fundamentally different from most classical key distribution schem...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
The generalized continuous variables quantum key distribution, which can use arbitrary modulation ra...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
Quantum key distribution (QKD) is fundamentally different from most classical key distribution schem...
We investigate the use of quantum scissors, as candidates for non-deterministic amplifiers, in conti...
The use of quantum scissors, as candidates for non-deterministic amplifiers, in continuous-variable ...
The use of quantum scissors, as candidates for non-deterministic amplifiers, in continuous-variable ...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
Here, we demonstrate that a practical Continuous Variables Quantum Key Distribution (CVQKD) protocol...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
Quantum key distribution (QKD) is fundamentally different from most classical key distribution schem...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
The generalized continuous variables quantum key distribution, which can use arbitrary modulation ra...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
Quantum key distribution (QKD) is fundamentally different from most classical key distribution schem...
We investigate the use of quantum scissors, as candidates for non-deterministic amplifiers, in conti...
The use of quantum scissors, as candidates for non-deterministic amplifiers, in continuous-variable ...
The use of quantum scissors, as candidates for non-deterministic amplifiers, in continuous-variable ...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
Here, we demonstrate that a practical Continuous Variables Quantum Key Distribution (CVQKD) protocol...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
Quantum key distribution (QKD) is fundamentally different from most classical key distribution schem...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
The generalized continuous variables quantum key distribution, which can use arbitrary modulation ra...