Long-distance photon-mediated and short-distance entangling gates in three-qubit quantum dot spin systems

dc.contributor.authorEstakhri, Nooshin M.en
dc.contributor.authorWarren, Adaen
dc.contributor.authorEconomou, Sophia E.en
dc.contributor.authorBarnes, Edwinen
dc.date.accessioned2025-02-18T13:16:43Zen
dc.date.available2025-02-18T13:16:43Zen
dc.date.issued2024-10-11en
dc.description.abstractSuperconducting resonator couplers will likely become an essential component in modular semiconductor quantum dot (QD) spin qubit processors, as they help alleviate crosstalk and wiring issues as the number of qubits increases. Here, we focus on a three-qubit system composed of two modules: a two-electron triple QD resonator coupled to a single-electron double QD. Using a combination of analytical techniques and numerical results, we derive an effective Hamiltonian that describes the three-qubit logical subspace and show that it accurately captures the dynamics of the system. We examine the performance of short-range and long-range entangling gates, revealing the effect of a spectator qubit in reducing the gate fidelities in both cases. We further study the competition between nonadiabatic errors and spectator-associated errors in short-range operations and quantify their relative importance across practical parameter ranges for short and long gate times. We also analyze the impact of charge noise together with residual coupling to the spectator qubit on intermodule entangling gates and find that for current experimental settings, leakage errors are the main source of infidelities in these operations. Our results help pave the way toward identifying optimal modular QD architectures for quantum information processing on semiconductor chips.en
dc.description.versionAccepted versionen
dc.format.extent19 page(s)en
dc.format.mimetypeapplication/pdfen
dc.identifierARTN 043029 (Article number)en
dc.identifier.doihttps://doi.org/10.1103/PhysRevResearch.6.043029en
dc.identifier.eissn2643-1564en
dc.identifier.issn2643-1564en
dc.identifier.issue4en
dc.identifier.urihttps://hdl.handle.net/10919/124627en
dc.identifier.volume6en
dc.language.isoenen
dc.publisherAmerican Physical Societyen
dc.rightsIn Copyrighten
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/en
dc.titleLong-distance photon-mediated and short-distance entangling gates in three-qubit quantum dot spin systemsen
dc.title.serialPhysical Review Researchen
dc.typeArticle - Refereeden
dc.type.dcmitypeTexten
dc.type.otherArticleen
dc.type.otherJournalen
dcterms.dateAccepted2024-07-15en
pubs.organisational-groupVirginia Techen
pubs.organisational-groupVirginia Tech/Scienceen
pubs.organisational-groupVirginia Tech/Science/Physicsen
pubs.organisational-groupVirginia Tech/All T&R Facultyen
pubs.organisational-groupVirginia Tech/Science/COS T&R Facultyen

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