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Comparison of spin-qubit architectures for quantum error-correcting codes

dc.creatorGutiƩrrez Arguedas, Mauricio
dc.creatorRojas Arias, Juan SebastiƔn
dc.creatorObando Vargas, David
dc.creatorChang, Chien-Yuan
dc.date.accessioned2026-05-14T19:42:38Z
dc.date.issued2025-06-20
dc.description.abstractWe investigate the performance of two quantum error-correcting codes, the surface code and the Bacon-Shor code, for implementation with spin qubits in silicon. In each case, we construct a logical qubit using a planar array of quantum dots, exploring two encoding schemes: one based solely on single-electron Zeeman qubits (Loss-DiVincenzo qubits), and a hybrid approach combining Zeeman and singlet-triplet qubits. For both codes, we evaluate key performance metrics, including logical state preparation fidelity and cycle-level error correction performance, using state-of-the-art experimental parameters. Our results show that the hybrid encoding consistently outperforms the pure Zeeman-qubit implementation. By identifying the dominant error mechanisms that limit quantum error correction performance, our study highlights concrete targets for improving spin qubit hardware and provides a path toward scalable fault-tolerant architectures. In particular, we find that the logical error rate is not limited by memory errors, but rather by gate errors, especially 1- and 2-qubit gate errors.
dc.description.procedenceUCR::Vicerrectorƭa de Docencia::Ciencias BƔsicas::Facultad de Ciencias::Escuela de Quƭmica
dc.description.procedenceUCR::Vicerrectorƭa de Docencia::Ciencias BƔsicas::Facultad de Ciencias::Escuela de Fƭsica
dc.description.sponsorshipVicerrectoría de Investigación/[]/VI/Costa Rica
dc.identifier.doihttps://doi.org/10.48550/arXiv.2506.17190
dc.identifier.issn2331-8422
dc.identifier.urihttps://hdl.handle.net/10669/104458
dc.language.isoeng
dc.rightsacceso abierto
dc.sourcearXiv
dc.subjectError-correcting codes
dc.subjectSpin qubits
dc.subjectMonte Carlo sampling
dc.subjectQuantum computing
dc.subjectQuantum physics
dc.subjectHybrid encoding
dc.titleComparison of spin-qubit architectures for quantum error-correcting codes
dc.typeartĆ­culo preliminar

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