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Hardware-Efficient Quantum Optimization Layered Algorithms and ExperimentsQuantum optimization algorithms, such as QAOA, that implement parametrized stochastic optimization solvers attempt to identify low-energy solutions of Ising systems by exploiting available quantum effects in noisy-intermediate scale machines. Engineering a well-performing parametrized quantum optimization circuit is indeed an exercise in balancing the trade-off between expressivity and implementation complexity. We show that, for MaxCut QAOA circuits defined on native hardware topology (Rigetti’s Aspen Quantum Processors), error-mitigation techniques recover simulated features of the noiseless theory. Moreover, we explore a design space for QAOA-like ansatze that perform well in theory as well as in hardware for fully-connected problems. We also discuss how efficient coherence and entanglement detection methods that could be coupled with quantum optimization experiments require only linear overhead in benchmarking time.
Document ID
20230003374
Acquisition Source
Ames Research Center
Document Type
Presentation
Authors
Davide Venturelli
(Universities Space Research Association Columbia, Maryland, United States)
M. Sohaib Alam
(Universities Space Research Association Columbia, Maryland, United States)
Matthew J. Reagor
(Rigetti Computing (United States) Berkeley, California, United States)
Bram Evert
(Rigetti Computing (United States) Berkeley, California, United States)
Shon Grabbe
(Ames Research Center Mountain View, California, United States)
Benjamin P Hall
(Universities Space Research Association Columbia, Maryland, United States)
Mark Hodson
(Rigetti Computing (United States) Berkeley, California, United States)
Ryan M LaRose
(Michigan State University East Lansing, Michigan, United States)
P. Aaron Lott
(Universities Space Research Association Columbia, Maryland, United States)
Eleanor G Rieffel
(Ames Research Center Mountain View, California, United States)
James Sud
(University of Chicago Chicago, Illinois, United States)
Zhihui Wang
(Universities Space Research Association Columbia, Maryland, United States)
Filip A Wudarski
(Universities Space Research Association Columbia, Maryland, United States)
Date Acquired
March 13, 2023
Subject Category
Computer Programming and Software
Meeting Information
Meeting: American Physical Society (APS) March Meeting 2022
Location: Chicago, IL
Country: US
Start Date: March 14, 2022
End Date: March 18, 2022
Sponsors: American Physical Society
Funding Number(s)
CONTRACT_GRANT: NNA16BD14C
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Peer Committee
Keywords
quantum computing
quantum algorithms
optimization
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