most citedQuantum random number generation for 1.25 GHz quantum key distribution systems

49 citations · 166 across the 5 of their papers we have counts for

collaborators
Showing quant-phShow all

6 papers · 1 filter

quant-ph201524 cited

Demonstration of Quantum Nonlocality in presence of Measurement Dependence

Djeylan Aktas, Sébastien Tanzilli, Anthony Martin +3

Quantum nonlocality stands as a resource for Device Independent Quantum Information Processing (DIQIP), as, for instance, Device Independent Quantum Key Distribution. We investigat…

quant-ph201549 cited

Quantum random number generation for 1.25 GHz quantum key distribution systems

A. Martin, B. Sanguinetti, C. C. W. Lim +2

Security proofs of quantum key distribution (QKD) systems usually assume that the users have access to source of perfect randomness. State-of-the-art QKD systems run at frequencies…

quant-ph201544 cited

Revealing Genuine Optical-Path Entanglement

F. Monteiro, V. Caprara Vivoli, T. Guerreiro +5

How can one detect entanglement between multiple optical paths sharing a single photon? We address this question by proposing a scalable protocol, which only uses local measurement…

quant-ph201430 cited

Detector-Device-Independent Quantum Key Distribution

Charles Ci Wen Lim, Boris Korzh, Anthony Martin +3

Recently, a quantum key distribution (QKD) scheme based on entanglement swapping, called measurement-device-independent QKD (mdiQKD), was proposed to bypass all detector side-chann…

quant-ph201419 cited

Comparing different approaches for generating random numbers device-independently using a photon pair source

V. Caprara Vivoli, P. Sekatski, J. -D. Bancal +6

What is the most efficient way to generate random numbers device-independently using a photon pair source based on spontaneous parametric down conversion (SPDC)? We consider this q…

quant-ph201433 cited

Challenging preconceptions about Bell tests with photon pairs

V. Caprara Vivoli, P. Sekatski, J. -D. Bancal +7

Motivated by very recent experiments, we consider a scenario "à la Bell" in which two protagonists test the Clauser-Horne-Shimony-Holt (CHSH) inequality using a photon-pair source…