23 citations · 26 across the 3 of their papers we have counts for
3 papers
Enhanced Fault-tolerance in Photonic Quantum Computing: Comparing the Honeycomb Floquet Code and the Surface Code in Tailored Architecture
Théo Dessertaine, Boris Bourdoncle, Aurélie Denys +5
Fault-tolerant quantum computing is crucial for realizing large-scale quantum computation, and the interplay between hardware architecture and quantum error-correcting codes is a k…
Simple rules for two-photon state preparation with linear optics
Grégoire de Gliniasty, Paul Bagourd, Sébastien Draux +1
Entangling photons is a critical challenge for photonic quantum information processing: entanglement is a crucial resource for quantum communication and computation but can only be…
A Spin-Optical Quantum Computing Architecture
Grégoire de Gliniasty, Paul Hilaire, Pierre-Emmanuel Emeriau +3
We introduce an adaptable and modular hybrid architecture designed for fault-tolerant quantum computing. It combines quantum emitters and linear-optical entangling gates to leverag…