Jin-Lei Wu
Systematic-Error-Tolerant Multiqubit Holonomic Entangling Gates
Wu, Jin-Lei; Wang, Yan; Han, Jin-Xuan; Jiang, Yongyuan; Song, Jie; Xia, Yan; Su, Shi-Lei; Li, Weibin
Authors
Yan Wang
Jin-Xuan Han
Yongyuan Jiang
Jie Song
Yan Xia
Shi-Lei Su
WEIBIN LI WEIBIN.LI@NOTTINGHAM.AC.UK
Associate Professor
Abstract
Quantum holonomic gates hold built-in resilience to local noises and provide a promising approach for implementing fault-tolerant quantum computation. We propose to realize high-fidelity holonomic (N + 1)-qubit controlled gates using Rydberg atoms confined in optical arrays or superconducting circuits. We identify the scheme, deduce the effective multi-body Hamiltonian, and determine the working condition of the multiqubit gate. Uniquely, the multiqubit gate is immune to systematic errors, i.e., laser parameter fluctuations and motional dephasing, as the N control atoms largely remain in the much stable qubit space during the operation. We show that CN-NOT gates can reach same level of fidelity at a given gate time for N ≤ 5 under a suitable choice of parameters, and the gate tolerance against errors in systematic parameters can be further enhanced through optimal pulse engineering. In case of Rydberg atoms, the proposed protocol is intrinsically different from typical schemes based on Rydberg blockade or antiblockade. Our study paves a new route to build robust multiqubit gates with Rydberg atoms trapped in optical arrays or with superconducting circuits. It contributes to current efforts in developing scalable quantum computation with trapped atoms and fabricable superconducting devices.
Citation
Wu, J.-L., Wang, Y., Han, J.-X., Jiang, Y., Song, J., Xia, Y., …Li, W. (2021). Systematic-Error-Tolerant Multiqubit Holonomic Entangling Gates. Physical Review Applied, 16(6), Article 064031. https://doi.org/10.1103/PhysRevApplied.16.064031
Journal Article Type | Article |
---|---|
Acceptance Date | Nov 16, 2021 |
Online Publication Date | Dec 13, 2021 |
Publication Date | 2021-12 |
Deposit Date | Nov 16, 2021 |
Publicly Available Date | Dec 13, 2021 |
Journal | Physical Review Applied |
Electronic ISSN | 2331-7019 |
Publisher | American Physical Society |
Peer Reviewed | Peer Reviewed |
Volume | 16 |
Issue | 6 |
Article Number | 064031 |
DOI | https://doi.org/10.1103/PhysRevApplied.16.064031 |
Public URL | https://nottingham-repository.worktribe.com/output/6727471 |
Publisher URL | https://journals.aps.org/prapplied/abstract/10.1103/PhysRevApplied.16.064031 |
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