We propose a method to improve the performance of two entanglement-based continuous-variable quantum key distribution protocols using noiseless linear amplifiers. The two entanglement-based schemes consist of an entanglement distribution protocol with an untrusted source and an entanglement swapping protocol with an untrusted relay. Simulation results show that the noiseless linear amplifiers can improve the performance of these two protocols, in terms of maximal transmission distances, when we consider small amounts of entanglement, as typical in realistic setups
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
We study a new quantum cryptography protocol with continuous variables for the construction of secre...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
We propose a method to improve the performance of two entanglement-based continuous-variable quantum...
We propose a method to improve the performance of two entanglement-based continuous-variable quantum...
We propose a modified no-switching continuous-variable quantum key distribution protocol by employin...
We show that the successful use of a noiseless linear amplifier (NLA) can help increase the maximum ...
We show that the maximum transmission distance of continuous-variable quantum key distribution in pr...
By employing a nondeterministic noiseless linear amplifier, we propose to increase the maximum trans...
We show that a noiseless linear amplifier (NLA) can be placed properly at the receiver’s end t...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
Discrete-variable (DV) and continuous-variable (CV) schemes constitute the two major families of qua...
An improved continuous variable quantum key distribution (CVQKD) approach based on a heralded hybrid...
The imperfections of a receiver's detector affect the performance of two-way continuous-variabl...
Quantum key distribution enables two remote parties to grow a shared key, which they can use for unc...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
We study a new quantum cryptography protocol with continuous variables for the construction of secre...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...
We propose a method to improve the performance of two entanglement-based continuous-variable quantum...
We propose a method to improve the performance of two entanglement-based continuous-variable quantum...
We propose a modified no-switching continuous-variable quantum key distribution protocol by employin...
We show that the successful use of a noiseless linear amplifier (NLA) can help increase the maximum ...
We show that the maximum transmission distance of continuous-variable quantum key distribution in pr...
By employing a nondeterministic noiseless linear amplifier, we propose to increase the maximum trans...
We show that a noiseless linear amplifier (NLA) can be placed properly at the receiver’s end t...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
Discrete-variable (DV) and continuous-variable (CV) schemes constitute the two major families of qua...
An improved continuous variable quantum key distribution (CVQKD) approach based on a heralded hybrid...
The imperfections of a receiver's detector affect the performance of two-way continuous-variabl...
Quantum key distribution enables two remote parties to grow a shared key, which they can use for unc...
A continuous-variable quantum key distribution protocol based on squeezed states and heterodyne dete...
We study a new quantum cryptography protocol with continuous variables for the construction of secre...
It is known that quantum scissors, as non-deterministic amplifiers, can enhance the performance of G...