Toward the real-time evolution of gauge-invariant Z2 and U(1) quantum link models on noisy intermediate-scale quantum hardware with error mitigation
Toward the real-time evolution of gauge-invariant Z2 and U(1) quantum link models on noisy intermediate-scale quantum hardware with error mitigation
Practical quantum computing holds clear promise in addressing problems not generally tractable with classical simulation techniques, and some key physically interesting applications are those of real-time dynamics in strongly coupled lattice gauge theories. In this article, we benchmark the real-time dynamics of ℤ2 and
Huffman, Emilie
651edff6-13d7-4205-90f6-40342ccdaf6a
Vera, Miguel García
d7821391-bf0f-4002-bd4c-14af8a12d101
Banerjee, Debasish
dcc5d706-d0ed-40b7-94f6-a4ddd7d41646
10 November 2022
Huffman, Emilie
651edff6-13d7-4205-90f6-40342ccdaf6a
Vera, Miguel García
d7821391-bf0f-4002-bd4c-14af8a12d101
Banerjee, Debasish
dcc5d706-d0ed-40b7-94f6-a4ddd7d41646
Huffman, Emilie, Vera, Miguel García and Banerjee, Debasish
(2022)
Toward the real-time evolution of gauge-invariant Z2 and U(1) quantum link models on noisy intermediate-scale quantum hardware with error mitigation.
Physical Review D, 106, [094502].
(doi:10.1103/PhysRevD.106.094502).
Abstract
Practical quantum computing holds clear promise in addressing problems not generally tractable with classical simulation techniques, and some key physically interesting applications are those of real-time dynamics in strongly coupled lattice gauge theories. In this article, we benchmark the real-time dynamics of ℤ2 and
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Accepted/In Press date: 21 September 2022
Published date: 10 November 2022
Identifiers
Local EPrints ID: 500509
URI: http://eprints.soton.ac.uk/id/eprint/500509
ISSN: 2470-0037
PURE UUID: 488b0ced-7959-422f-b06f-e0c320c4d2bb
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Date deposited: 02 May 2025 16:35
Last modified: 03 May 2025 02:18
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Contributors
Author:
Emilie Huffman
Author:
Miguel García Vera
Author:
Debasish Banerjee
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