activity
20242026
most citedFusion and flow: formal protocols to reliably build photonic graph states

2 citations · 4 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph20261 cited

A dataflow programming framework for linear optical distributed quantum computing

Giovanni de Felice, Boldizsár Poór, Cole Comfort +4

Photonic systems offer a promising platform for interconnecting quantum processors and enabling scalable, networked architectures. Designing and verifying such architectures requir…

quant-ph20251 cited

Optyx: A ZX-based Python library for networked quantum architectures

Mateusz Kupper, Richie Yeung, Boldizsár Poór +3

Distributed, large-scale quantum computing will need architectures that combine matter-based qubits with photonic links, but today's software stacks target either gate-based chips…

cs.CR2025

Accelerating AI Development with Cyber Arenas

William Cashman, Chasen Milner, Michael Houle +5

AI development requires high fidelity testing environments to effectively transition from the laboratory to operations. The flexibility offered by cyber arenas presents a novel opp…

quant-ph2025

Finding trail covers: near-optimal decompositions of graph states as linear fusion networks

William Cashman, Giovanni de Felice, Aleks Kissinger

Quantum compilation requires the development of new algorithms that optimise the cost of implementing quantum computations on physical hardware. Often this gives rise to problems w…

quant-ph20242 cited

Fusion and flow: formal protocols to reliably build photonic graph states

Giovanni de Felice, Boldizsár Poór, Lia Yeh +1

Photonics offers a promising platform for implementations of measurement-based quantum computing. Recently proposed fusion-based architectures aim to achieve universality and fault…