论文标题

高保真近场微波驱动的量子逻辑的低温离子陷阱系统

Cryogenic ion trap system for high-fidelity near-field microwave-driven quantum logic

论文作者

Weber, M. A., Löschnauer, C., Wolf, J., Gely, M. F., Hanley, R. K., Goodwin, J. F., Ballance, C. J., Harty, T. P., Lucas, D. M.

论文摘要

我们报告了一个低温离子陷阱系统的设计,制造和表征,用于实施由近场微波炉驱动的量子逻辑。该陷阱结合了带有电极几何形状的片上微波谐振器,旨在将其直接耦合到量子的微波磁场组件,同时为驱动纠缠逻辑门提供了较大的场梯度。我们使用单个$^{43} $ ca $^+$ ion绘制微波字段,并测量一个和两个离子的离子捕获寿命和运动模式加热率。

We report the design, fabrication, and characterization of a cryogenic ion trap system for the implementation of quantum logic driven by near-field microwaves. The trap incorporates an on-chip microwave resonator with an electrode geometry designed to null the microwave field component that couples directly to the qubit, while giving a large field gradient for driving entangling logic gates. We map the microwave field using a single $^{43}$Ca$^+$ ion, and measure the ion trapping lifetime and motional mode heating rates for one and two ions.

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