Strolling through a NISQ processor
Strolling through a NISQ processor
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DOI:
10.1364/quantum.2022.qm4a.4
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发表时间:
2022-05
期刊:
影响因子:
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通讯作者:
W. Munro;M. Gong;S. Wang;C. Zha;M.-C. Chen;H. Huang;Yuehua Wu;Q. Zhu;Y. Zhao;S. Li;S. Guo;H. Qian;Y. Ye;F. Chen;C. Ying;J. Yu;D. Fan;D. Wu;H. Su;H. Deng;H. Rong;K. Zhang;S. Cao;J. Lin;Y. Xu;L. Sun;C. Guo;N. Li;F. Liang;V. Bastidas;K. Nemoto;Yiran Huo;C.-Y. Lu;C. Peng;X. Zhu;J.-W. Pan
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文献类型:
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作者:
W. Munro;M. Gong;S. Wang;C. Zha;M.-C. Chen;H. Huang;Yuehua Wu;Q. Zhu;Y. Zhao;S. Li;S. Guo;H. Qian;Y. Ye;F. Chen;C. Ying;J. Yu;D. Fan;D. Wu;H. Su;H. Deng;H. Rong;K. Zhang;S. Cao;J. Lin;Y. Xu;L. Sun;C. Guo;N. Li;F. Liang;V. Bastidas;K. Nemoto;Yiran Huo;C.-Y. Lu;C. Peng;X. Zhu;J.-W. Pan
We demonstrate high fidelity multi-particle quantum walks on an 8x8 two-dimensional square superconducting qubit NISQ processor with 62 functional qubits. Further we implement a Mach-Zehnder interferometer where quantum walkers can coherently traverse the circuit.