activity
20182026
most citedHigh-speed integrated QKD system

3 citations · 3 across the 2 of their papers we have counts for

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6 papers · 1 filter

quant-ph2026

Influence of laser chirp and interferometer delay and imbalance on the performance of a time-bin BB84 quantum key distribution system

Loïc Millet, Alberto Boaron, Rob Thew +1

We investigate the effect of interferometer delay and imbalance on the performance of a BB84 time-bin quantum key distribution system. We simulate the impact of interference visibi…

quant-ph2026

Phase-correlation-free quantum key distribution source operating at gigahertz rates

Shashank Kumar, Alessandro Marcomini, Loïc Millet +8

Phase randomization is essential for the security of practical decoy-state quantum key distribution (QKD) systems. Commonly, implementations rely on laser sources which are either…

quant-ph2026

Analytical Model of Clock Drift in Quantum Key Distribution and a Simple Synchronization Algorithm

Loïc Millet, Boris Korzh, Rob Thew +1

Clock synchronization is critical for maintaining low error rates in quantum key distribution. Here, we describe how a frequency mismatch between the transmitter and receiver clock…

quant-ph20223 cited

High-speed integrated QKD system

Rebecka Sax, Alberto Boaron, Gianluca Boso +10

Quantum key distribution (QKD) is nowadays a well established method for generating secret keys at a distance in an information-theoretic secure way, as the secrecy of QKD relies o…

quant-ph2018

Secure quantum key distribution over 421 km of optical fiber

Alberto Boaron, Gianluca Boso, Davide Rusca +10

We present a quantum key distribution system with a 2.5 GHz repetition rate using a three-state time-bin protocol combined with a one-decoy approach. Taking advantage of supercondu…

quant-ph2018

Simple 2.5 GHz time-bin quantum key distribution

Alberto Boaron, Boris Korzh, Raphael Houlmann +7

We present a 2.5 GHz quantum key distribution setup with the emphasis on a simple experimental realization. It features a three-state time-bin protocol based on a pulsed diode lase…