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Tunable quantum beam splitters for coherent manipulation of a solid-state tripartite qubit system

机译:用于固态三方量子位系统相干操纵的可调量子分束器

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Coherent control of quantum states is at the heart of implementing solid-state quantum processors and testing quantum mechanics at the macroscopic level. Despite significant progress made in recent years in controlling single- and bi-partite quantum systems, coherent control of quantum wave function in multipartite systems involving artificial solid-state qubits has been hampered due to the relatively short decoherence time and lack of precise control methods. Here we report the creation and coherent manipulation of quantum states in a tripartite quantum system, which is formed by a superconducting qubit coupled to two microscopic two-level systems (TLSs). The avoided crossings in the system's energy-level spectrum due to the qubit–TLS interaction act as tunable quantum beam splitters of wave functions. Our result shows that the Landau–Zener–Stückelberg interference has great potential in precise control of the quantum states in the tripartite system.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:量子态的相干控制是实现固态量子处理器和在宏观级别测试量子力学的核心。尽管近年来在控制单部分和双部分量子系统方面取得了重大进展,但是由于相干时间相对较短并且缺乏精确的控制方法,因此涉及人工固态量子位的多部分系统中量子波功能的相干控制受到阻碍。在这里,我们报告三方量子系统中量子态的创建和相干操纵,该系统由耦合到两个微观两级系统(TLS)的超导量子位形成。由于量子位-TLS相互作用而导致的系统能级谱中避免的交叉充当了波函数的可调量子分束器。我们的结果表明,Landau–Zener–Stückelberg干涉在精确控制三方体系中的量子态方面具有巨大潜力。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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