5 citations · 5 across the 6 of their papers we have counts for
6 papers · 1 filter
Exploring the landscape of compact magic-state distillation factories
Hugo Jacinto, Xavier Valcarce, Victor Barizien +2
Producing high-fidelity magic states using the smallest possible number of physical qubits and operations stands as a very important challenge to achieve fault-tolerant quantum com…
Optimal Decoding of Small Codes by Density Matrix Propagation
Anthony Benois, Pierre Cussenot, Grégoire Misguich +2
Accurate and efficient decoding is a crucial component for achieving fault-tolerant quantum computing. Realistic circuit-level noise introduces temporal correlations and degeneracy…
Accessible Quantum Gates on Classical Stabilizer Codes
Victor Barizien, Hugo Jacinto, Nicolas Sangouard
With the advent of physical qubits exhibiting strong noise bias, it becomes increasingly relevant to identify which quantum gates can be efficiently implemented on error-correcting…
Network Requirements for Distributed Quantum Computation
Hugo Jacinto, Élie Gouzien, Nicolas Sangouard
Physical constraints and engineering challenges, including wafer dimensions, classical control cabling, and refrigeration volumes, impose significant limitations on the scalability…
Provably optimal exact gate synthesis from a discrete gate set
Élie Gouzien, Nicolas Sangouard
We propose a method for exact circuit synthesis using a discrete gate set, as required for fault-tolerant quantum computing. Our approach translates the problem of synthesizing a g…
Uniting Quantum Processing Nodes of Cavity-coupled Ions with Rare-earth Quantum Repeaters Using Single-photon Pulse Shaping Based on Atomic Frequency Comb
P. Cussenot, B. Grivet, B. P. Lanyon +4
We present an architecture for remotely connecting cavity-coupled trapped ions via a quantum repeater based on rare-earth-doped crystals. The main challenge for its realization lie…