Title | Experimental Realization of Two Qutrits Gate with Tunable Coupling in Superconducting Circuits |
Author | |
Publication Years | 2023-01-20
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DOI | |
Source Title | |
ISSN | 0031-9007
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EISSN | 1079-7114
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Volume | 130 |
Abstract | Gate-based quantum computation has been extensively investigated using quantum circuits based on qubits. In many cases, such qubits are actually made out of multilevel systems but with only two states being used for computational purpose. While such a strategy has the advantage of being in line with the common binary logic, it in some sense wastes the ready-for-use resources in the large Hilbert space of these intrinsic multidimensional systems. Quantum computation beyond qubits (e.g., using qutrits or qudits) has thus been discussed and argued to be more efficient than its qubit counterpart in certain scenarios. However, one of the essential elements for qutrit-based quantum computation, two-qutrit quantum gate, remains a major challenge. In this Letter, we propose and demonstrate a highly efficient and scalable two-qutrit quantum gate in superconducting quantum circuits. Using a tunable coupler to control the cross-Kerr coupling between two qutrits, our scheme realizes a two-qutrit conditional phase gate with fidelity 89.3% by combining simple pulses applied to the coupler with single-qutrit operations. We further use such a two-qutrit gate to prepare an EPR state of two qutrits with a fidelity of 95.5%. Our scheme takes advantage of a tunable qutrit-qutrit coupling with a large on:off ratio. It therefore offers both high efficiency and low crosstalk between qutrits, thus being friendly for scaling up. Our Letter constitutes an important step toward scalable qutrit-based quantum computation. © 2023 American Physical Society. |
Indexed By | |
Language | English
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Important Publications | NI Journal Papers
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SUSTech Authorship | Others
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Funding Project | This work was supported by the Key-Area Research and Development Program of Guang-Dong Province (Grant No. 2018B030326001), the National Natural Science Foundation of China (Grants No. U1801661 and No. 12004162), the Guangdong Provincial Key Laboratory (Grant No. 2019B121203002), the Science, Technology and Innovation Commission of Shenzhen Municipality (JCYJ20170412152620376, KYTDPT20181011104202253), and the Natural Science Foundation of Guangdong Province (Grant No. 2017B030308003).
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WOS Accession No | WOS:000939267000008
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Publisher | |
EI Accession Number | 20230613537119
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EI Keywords | Computation theory
; Logic gates
; Quantum optics
; Timing circuits
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ESI Classification Code | Pulse Circuits:713.4
; Computer Theory, Includes Formal Logic, Automata Theory, Switching Theory, Programming Theory:721.1
; Logic Elements:721.2
; Light, Optics and Optical Devices:741
; Light/Optics:741.1
; Nanotechnology:761
; Quantum Theory; Quantum Mechanics:931.4
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ESI Research Field | PHYSICS
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Data Source | EV Compendex
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Citation statistics |
Cited Times [WOS]:0
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Document Type | Journal Article |
Identifier | http://kc.sustech.edu.cn/handle/2SGJ60CL/519677 |
Department | Department of Physics 量子科学与工程研究院 |
Affiliation | 1.Department of Physics, Harbin Institute of Technology, Harbin; 150001, China 2.Department of Physics, Southern University of Science and Technology, Shenzhen; 518055, China 3.Shenzhen Institute for Quantum Science and Engineering, Southern University of Science and Technology, Shenzhen; 518055, China 4.Central Research Institute, 2012 Labs, Huawei Technologies, Shenzhen; 518129, China 5.Guangdong Provincial Key Laboratory of Quantum Science and Engineering, Southern University of Science and Technology, Shenzhen; 518055, China 6.Shenzhen Key Laboratory of Quantum Science and Engineering, Southern University of Science and Technology, Shenzhen; 518055, China 7.International Quantum Academy, Shenzhen; 518048, China |
First Author Affilication | Department of Physics; Institute for Quantum Science and Engineering |
Recommended Citation GB/T 7714 |
Luo, Kai,Huang, Wenhui,Tao, Ziyu,et al. Experimental Realization of Two Qutrits Gate with Tunable Coupling in Superconducting Circuits[J]. PHYSICAL REVIEW LETTERS,2023,130.
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APA |
Luo, Kai.,Huang, Wenhui.,Tao, Ziyu.,Zhang, Libo.,Zhou, Yuxuan.,...&Yu, Dapeng.(2023).Experimental Realization of Two Qutrits Gate with Tunable Coupling in Superconducting Circuits.PHYSICAL REVIEW LETTERS,130.
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MLA |
Luo, Kai,et al."Experimental Realization of Two Qutrits Gate with Tunable Coupling in Superconducting Circuits".PHYSICAL REVIEW LETTERS 130(2023).
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