From the 1 of 8 linked papers with an AI index.
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Towards logical entanglement creation in trivalent planar architectures
Lukas Bödeker, Luis Colmenarez, Sergey Blinov +3
The paper proposes scalable lattice‑surgery circuits for surface‑code error correction on planar quantum processors where each qubit has only three nearest‑neighbor connections, sh…
Fundamental thresholds for computational and erasure errors via the coherent information
Luis Colmenarez, Seyong Kim, Markus Müller
Quantum error correcting (QEC) codes protect quantum information against environmental noise. Computational errors caused by the environment change the quantum state within the qub…
Lattice surgery-based logical state teleportation via noisy links
Ãron Márton, Luis Colmenarez, Lukas Bödeker +1
For planar architectures surface code-based quantum error correction is one of the most promising approaches to fault-tolerant quantum computation. This is partially due to the var…
On the interpretability of neural network decoders
Lukas Bödeker, Luc J. B. Kusters, Markus Müller
Neural-network (NN) based decoders are becoming increasingly popular in the field of quantum error correction (QEC), including for decoding of state-of-the-art quantum computation…
Bosonic Quantum Error Correction with Neutral Atoms in Optical Dipole Traps
Leon H. Bohnmann, David F. Locher, Johannes Zeiher +1
Bosonic quantum error correction codes encode logical qubits in the Hilbert space of one or multiple harmonic oscillators. A prominent class of bosonic codes is that of Gottesman-K…
Realizing Lattice Surgery on Two Distance-Three Repetition Codes with Superconducting Qubits
Ilya Besedin, Michael Kerschbaum, Jonathan Knoll +12
Quantum error correction is needed for quantum computers to be capable of fault-tolerantly executing algorithms using hundreds of logical qubits. Recent experiments have demonstrat…