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quant-ph2026

Quantum Nonlocal Games on Graph Ensembles

Joshua Tucker, Chris Weeks, Peter Drmota +11

Quantum entanglement is one of the most striking discoveries in all of science. This effect allows, for instance, two spatially separated agents to coordinate their actions, withou…

quant-ph2025

Quantum-Assisted Graph Domination Games

C. Weeks, P. Strange, P. Drmota +1

We study quantum advantage in the 1-step graph domination game on cycle graphs numerically, analytically and through the use of Noisy intermediate scale quantum (NISQ) processors.…

quant-ph2025

Multipartite Mixed-Species Entanglement over a Quantum Network

D. Main, P. Drmota, E. M. Ainley +9

We generate multipartite entangled states of two, three and four matter qubits, where the entanglement is distributed over macroscopic distances via a photonic network link. Trappe…

quant-ph2024

Experimental Quantum Advantage in the Odd-Cycle Game

P. Drmota, D. Main, E. M. Ainley +7

We report the first experimental demonstration of the odd-cycle game. We entangle two ions separated by ~2 m and the players use them to win the odd-cycle game with a probability ~…

quant-ph2024

Multipartite Entanglement for Multi-node Quantum Networks

E. M. Ainley, A. Agrawal, D. Main +5

Scaling the number of entangled nodes in a quantum network is a challenge with significant implications for quantum computing, clock synchronisation, secure communications, and qua…

quant-ph2024

Distributed Quantum Computing across an Optical Network Link

D. Main, P. Drmota, D. P. Nadlinger +6

Distributed quantum computing (DQC) combines the computing power of multiple networked quantum processing modules, enabling the execution of large quantum circuits without compromi…