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Topological Two-Dimensional Floquet Lattice on a Single Superconducting Qubit

机译:单个超导量子位的拓扑二维浮子格子

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Current noisy intermediate-scale quantum (NISQ) devices constitute powerful platforms for analog quantum simulation. The exquisite level of control offered by state-of-the-art quantum computers make them especially promising to implement time-dependent Hamiltonians. We implement quasiperiodic driving of a single qubit in the IBM Quantum Experience and thus experimentally realize a temporal version of the half-Bernevig-Hughes-Zhang Chem insulator. Using simple error mitigation, we achieve consistently high fidelities of around 97%. From our data we can infer the presence of a topological transition, thus realizing an earlier proposal of topological frequency conversion by Martin, Refael, and Halperin. Motivated by these results, we theoretically study the many-qubit case, and show that one can implement a wide class of Floquet Hamiltonians, or time-dependent Hamiltonians in general. Our study highlights promises and limitations when studying many-body systems through multifrequency driving of quantum computers.
机译:目前嘈杂的中间级量子(NISQ)器件构成了模拟量子仿真的强大平台。最先进的量子计算机提供的精致控制水平使其特别承诺实施时间依赖的哈密顿人。我们在IBM量子经验中实施了单个Qubit的QuaSipheriodic驾驶,从而实验地实现了半Bernevig-Hughes-Zhang Chem绝缘体的时间版本。使用简单的错误缓解,我们实现始终如一的高保真大约97%。从我们的数据来看,我们可以推断出拓扑过渡的存在,从而实现了Martin,Refael和Halperin的拓扑频率转换的早期提案。这些结果的激励,我们理论上地研究了许多Qubbit案例,并表明人们可以实施广泛的浮子哈密顿人,或一般依赖的哈密顿人。我们的研究突出了通过量子计算机的多频驱动研究许多机身系统时的承诺和限制。

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  • 来源
    《Physical review letters 》 |2021年第16期| 163602.1-163602.7| 共7页
  • 作者

    Malz Daniel; Smith Adam;

  • 作者单位

    Max Planck Inst Quantum Opt Hans Kopfermann Str 1 D-85748 Garching Germany|Munich Ctr Quantum Sci & Technol Schellingstr 1 D-80799 Munich Germany;

    Tech Univ Munich Dept Phys TFK James Franck Str 1 D-85748 Garching Germany|Univ Nottingham Sch Phys & Astron Nottingham NG7 2RD England|Univ Nottingham Ctr Math & Theoret Phys Quantum Nonequilibrium Sy Nottingham NG7 2RD England;

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