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quant-ph2026

Two Layers, No Swaps: Biplanar SPOQC Architecture Improves Runtime of Fermi-Hubbard Simulation

Boris Bourdoncle, Peter-Jan Derks, Théo Dessertaine +1

We estimate the cost of simulating the two-dimensional Fermi-Hubbard model on a biplanar spin-optical quantum computing (SPOQC) architecture. Qubits are encoded in the honeycomb Fl…

quant-ph2026

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…

quant-ph2025

Minimizing resource overhead in fusion-based quantum computation using hybrid spin-photon devices

Stephen C. Wein, Timothée Goubault de Brugière, Luka Music +3

We present three schemes for constructing a (2,2)-Shor-encoded 6-ring photonic resource state for fusion-based quantum computing, each relying on a different type of photon source.…

quant-ph2025

Towards practical secure delegated quantum computing with semi-classical light

Boris Bourdoncle, Pierre-Emmanuel Emeriau, Paul Hilaire +3

Secure Delegated Quantum Computation (SDQC) protocols are a vital piece of the future quantum information processing global architecture since they allow end-users to perform their…

quant-ph2025

Quantum bounds for compiled XOR games and -outcome CHSH games

Matilde Baroni, Quoc-Huy Vu, Boris Bourdoncle +3

Nonlocal games play a crucial role in quantum information theory and have numerous applications in certification and cryptographic protocols. Kalai et al. (STOC 2023) introduced a…