论文标题

非线性量子电路的可调冰箱

Tunable refrigerator for non-linear quantum electric circuits

论文作者

Hsu, Hao, Silveri, Matti, Gunyhó, András, Goetz, Jan, Catelani, Gianluigi, Möttönen, Mikko

论文摘要

新兴的量子技术应用要求将相应的设备快速准确地初始化到低渗透量子状态。为此,我们从理论上研究了最近证明的量子电路冰箱,在非线性量子电路(例如超导Qubits)的情况下。观察到transmon和通量量子的最大制冷速率大约比通常的线性谐振器高的数量级,从而提高了设计的灵活性。我们发现,对于典型的实验参数,冰箱适合将不同的量子类型重置为在几个或几十纳秒内的延迟以上的忠诚度以上超过99.99%,具体取决于情况。因此,冰箱似乎是量子技术和开放量子系统详细研究的有前途的工具。

The emerging quantum technological applications call for fast and accurate initialization of the corresponding devices to low-entropy quantum states. To this end, we theoretically study a recently demonstrated quantum-circuit refrigerator in the case of non-linear quantum electric circuits such as superconducting qubits. The maximum refrigeration rate of transmon and flux qubits is observed to be roughly an order of magnitude higher than that of usual linear resonators, increasing flexibility in the design. We find that for typical experimental parameters, the refrigerator is suitable for resetting different qubit types to fidelities above 99.99% in a few or a few tens of nanoseconds depending on the scenario. Thus the refrigerator appears to be a promising tool for quantum technology and for detailed studies of open quantum systems.

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