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Lower Bounds on Quantum Annealing Times,

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Correction Crossref 1 open · 1 total · 0 disputed
DOI
10.1103/physrevlett.130.140601
Notice DOI
10.1103/physrevlett.130.140601
Event date
2023-04-05
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01One-hop citing occurrences

Correction Open
Resource Management in Heterogeneous Quantum Repeater Networks

ref [59] · 2605.25132 · notice #2402 · dispute

Raw extraction · citation context

objectivevaluedistributiontomodifythestandardGroversearch,andcanbeunderstood as a specific instance of the broader QAOA framework. The main contribution, however, is a rigorous analysis of QAOA itself. In a work with my collaborators Andreas Bärtschi, Luis Pedro García-Pintos, John Golden, Nathan Lemons,andStephanEidenbenz,publishedinPhysicalReviewA[58],weutilizespeed limit results from quantum annealing [59] to derive some of the first analytical lower boundsonQAOA'sruntime. Thekeyresultofthisworkisshowingthattherequiredrun- timeisnotmonolithic;itcanrangefromconstant-timeforeasyproblemstopolynomial or even square-root scaling for unstructured search. Using these findings, I argue about the workload implications for a distributed datacenter model. This chapter discusses

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