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20242026
most citedContinuous-variable quantum communication

17 citations · 18 across the 12 of their papers we have counts for

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Showing 2025Show all

14 papers · 1 filter

quant-ph2025

Distribution of non-Gaussian states in a deployed telecommunication fiber channel

Casper A. Breum, Xueshi Guo, Mikkel V. Larsen +4

Optical non-Gaussian states hold great promise as a pivotal resource for advanced optical quantum information processing and fault-tolerant long-distance quantum communication. Est…

quant-ph2025

The Octo-Rail Lattice: a four-dimensional cluster state design

Emil E. B. Østergaard, Niklas Budinger, Mikkel V. Larsen +3

Macronode cluster states are promising for fault-tolerant continuous-variable quantum computation, combining gate teleportation via homodyne detection with the Gottesman-Kitaev-Pre…

quant-ph2025

Quantum-enhanced biosensing enables earlier detection of bacterial growth

Rayssa B. de Andrade, Anne Egholm Høgh, Gaetana Spedalieri +4

Rapid detection of bacterial growth is crucial in clinical, food safety, and environmental contexts, yet conventional optical methods are limited by noise and require hours of incu…

quant-ph2025

Nullifiers of non-Gaussian cluster states through homodyne measurement

Vojtěch Kala, Casper A. Breum, Mikkel V. Larsen +4

In continuous variable optical platforms, large-scale Gaussian cluster states have already been demonstrated, but non-Gaussian resources are essential to achieve universality and f…

quant-ph2025

Coexistence of continuous-variable quantum key distribution and classical data over 120-km fiber

Adnan A. E. Hajomer, Ivan Derkach, Vladyslav C. Usenko +2

Integrating quantum key distribution (QKD) with classical data transmission over the same fiber is crucial for scalable quantum-secured communication. However, noise from classical…

quant-ph2025

Improving semi-device-independent randomness certification by entropy accumulation

Carles Roch I Carceller, Lucas Nunes Faria, Zheng-Hao Liu +4

Certified randomness guaranteed to be unpredictable by adversaries is central to information security. The fundamental randomness inherent in quantum physics makes certification po…