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quant-ph2025

On noise in swap ASAP repeater chains: exact analytics, distributions and tight approximations

Kenneth Goodenough, Tim Coopmans, Don Towsley

Losses are one of the main bottlenecks for the distribution of entanglement in quantum networks, which can be overcome by the implementation of quantum repeaters. The most basic fo…

quant-ph2024

Optimising entanglement distribution policies under classical communication constraints assisted by reinforcement learning

Jan Li, Tim Coopmans, Patrick Emonts +3

Quantum repeaters play a crucial role in the effective distribution of entanglement over long distances. The nearest-future type of quantum repeater requires two operations: entang…

quant-ph2024

Quantum Graph-State Synthesis with SAT

Sebastiaan Brand, Tim Coopmans, Alfons Laarman

In quantum computing and quantum information processing, graph states are a specific type of quantum states which are commonly used in quantum networking and quantum error correcti…

quant-ph2024

Advancing Quantum Computing with Formal Methods

Arend-Jan Quist, Jingyi Mei, Tim Coopmans +1

This tutorial introduces quantum computing with a focus on the applicability of formal methods in this relatively new domain. We describe quantum circuits and convey an understandi…

quant-ph2024

Aging and Reliability of Quantum Networks

Lisa T. Weinbrenner, Lina Vandré, Tim Coopmans +1

Quantum information science may lead to technological breakthroughs in computing, cryptography and sensing. For the implementation of these tasks, however, complex devices with man…