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quant-ph2026

Magic states are rarely the best resource to optimize: An analytical tool for qubit resource estimation in concatenated codes

Marco Fellous-Asiani, Hui Khoon Ng, Robert S. Whitney

Concatenated error-correction schemes are well-understood routes to fault-tolerant quantum computing, and research on such schemes continues, including recent claims that they may…

quant-ph2026

Simulating general noise nearly as cheaply as Pauli noise

Mark Myers, Mariesa H. Teo, Rajesh Mishra +2

Stabilizer simulation of Clifford quantum circuits - error-correction circuits, Clifford subroutines, etc. - on classical computers has played a central role in our understanding o…

quant-ph2026

Hamiltonian Benchmark of a Solid-State Spin-Photon Interface for Computation

Tejas Acharya, Loïc Lanco, Olivier Krebs +3

Light-matter interfaces are pivotal for quantum computation and communication. While typically analyzed using single-mode or open-quantum-system approximations, these models often…

quant-ph2026

Information-efficient decoding of surface codes

Long D. H. My, Shao-Hen Chiew, Jing Hao Chai +1

Surface codes are a popular error-correction route to fault-tolerant quantum computation. The so-called exponential backlog problem that can arise when one has to do logical -ga…

quant-ph2024

Fault-tolerant embedding of quantum circuits on hardware architectures via swap gates

Shao-Hen Chiew, Ezequiel Ignacio Rodriguez Chiacchio, Vishal Sharma +2

In near-term quantum computing devices, connectivity between qubits remain limited by architectural constraints. A computational circuit with given connectivity requirements necess…