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Mutual information-assisted adaptive variational quantum eigensolver

  • Adaptive construction of ansatz circuits offers a promising route towards applicable variational quantum eigensolvers on near-term quantum hardware. Those algorithms aim to build up optimal circuits for a certain problem and ansatz circuits are adaptively constructed by selecting and adding entanglers from a predefined pool. In this work, we propose a way to construct entangler pools with reduced size by leveraging classical algorithms. Our method uses mutual information between the qubits in classically approximated ground state to rank and screen the entanglers. The density matrix renormalization group method is employed for classical precomputation in this work. We corroborate our method numerically on small molecules. Our numerical experiments show that a reduced entangler pool with a small portion of the original entangler pool can achieve same numerical accuracy. We believe that our method paves a new way for adaptive construction of ansatz circuits for variational quantumAdaptive construction of ansatz circuits offers a promising route towards applicable variational quantum eigensolvers on near-term quantum hardware. Those algorithms aim to build up optimal circuits for a certain problem and ansatz circuits are adaptively constructed by selecting and adding entanglers from a predefined pool. In this work, we propose a way to construct entangler pools with reduced size by leveraging classical algorithms. Our method uses mutual information between the qubits in classically approximated ground state to rank and screen the entanglers. The density matrix renormalization group method is employed for classical precomputation in this work. We corroborate our method numerically on small molecules. Our numerical experiments show that a reduced entangler pool with a small portion of the original entangler pool can achieve same numerical accuracy. We believe that our method paves a new way for adaptive construction of ansatz circuits for variational quantum algorithms.zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Zi-Jian Zhang, Thi Ha Kyaw, Jakob S. KottmannORCiDGND, Matthias Degroote, Alán Aspuru-Guzik
Frontdoor-URLhttps://opus.bibliothek.uni-augsburg.de/opus4/101953
ISSN:2058-9565OPAC
Titel des übergeordneten Werkes (Englisch):Quantum Science and Technology
Verlag:IOP Publishing
Verlagsort:Philadelphia, PA
Typ:Wissenschaftlicher Artikel
Sprache:Englisch
Jahr der Erstveröffentlichung:2021
Veröffentlichende Institution:Universität Augsburg
Datum der Freischaltung in OPUS:14.02.2023
Freies Schlagwort / Tag:Atomic and Molecular Physics, and Optics; Electrical and Electronic Engineering; Materials Science (miscellaneous); Physics and Astronomy (miscellaneous)
Jahrgang:6
Ausgabe / Heft:3
Erste Seite:035001
DOI:https://doi.org/10.1088/2058-9565/abdca4
Einrichtungen der Universität:Fakultät für Angewandte Informatik
Fakultät für Angewandte Informatik / Institut für Informatik
Fakultät für Angewandte Informatik / Institut für Informatik / Professur für Quantenalgorithmik