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Large-amplitude driving of a superconducting artificial atom

机译:超导人工原子的大振幅驱动

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Superconducting persistent-current qubits are quantum-coherent artificial atoms with multiple, tunable energy levels. In the presence of large-amplitude harmonic excitation, the qubit state can be driven through one or more of the constituent energy-level avoided crossings. The resulting Landau–Zener–Stückelberg (LZS) transitions mediate a rich array of quantum-coherent phenomena. We review here three experimental works based on LZS transitions: Mach–Zehnder-type interferometry between repeated LZS transitions, microwave-induced cooling, and amplitude spectroscopy. These experiments exhibit a remarkable agreement with theory, and are extensible to other solid-state and atomic qubit modalities. We anticipate they will find application to qubit state-preparation and control methods for quantum information science and technology.
机译:超导持续电流量子位是具有多个可调能级的量子相干人工原子。在大振幅谐波激励的存在下,可以通过一个或多个组成能级避免的交叉来驱动量子位状态。最终的Landau–Zener–Stückelberg(LZS)跃迁介导了一系列量子相干现象。我们在此回顾基于LZS跃迁的三项实验工作:重复LZS跃迁之间的Mach-Zehnder型干涉测量,微波感应冷却和振幅谱。这些实验与理论具有显着的一致性,并且可以扩展到其他固态和原子量子位形式。我们预计他们将找到用于量子信息科学和技术的量子位状态准备和控制方法的应用。

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