论文标题

快速生产无缺陷的铍离子库仑晶体

Rapid production of defect-free beryllium ion Coulomb crystals

论文作者

Wu, Qiming, Filzinger, Melina, Shi, Yue, Wang, Zhihui, Zhang, Jiehang

论文摘要

被困的原子离子可以找到从精度测量到量子信息科学和量子计算的广泛应用。在使用的不同原子物种中,由于其轻质的质量和方便的原子结构,铍离子被广泛使用。但是,离子加载过程需要高温才能达到足够的蒸气压,为背景真空产生了不良的气体负荷,并限制了长离子链的寿命。在这里,我们展示了一种简单的方法,可以快速生产带有脉冲激光消融的铍离子的纯线性链,作为大规模量子信息处理的起点。与热烤箱相比,我们的方法很快。将真空负载减少到仅10^(-12)托尔水平;恢复时间短几秒钟;还消除了需要深层紫外线激光以进行光电发。此外,我们应用反馈控制以获得理想长度的无缺陷离子阵列。

Trapped atomic ions find wide applications ranging from precision measurement to quantum information science and quantum computing. Among the different atomic species employed, beryllium ions are widely used due to its light mass and convenient atomic structure. However, the ion loading process requires a high temperature for sufficient vapor pressure, generating undesirable gas load for the background vacuum and limiting the lifetime of a long ion chain. Here, we demonstrate a simple method to rapidly produce pure linear chains of beryllium ions with pulsed laser ablation, serving as a starting point for large-scale quantum information processing. Our method is fast compared to thermal ovens; reduces the vacuum load to only 10^(-12) Torr level; yields a short recovery time of a few seconds; and also eliminates the need for a deep ultraviolet laser for photo-ionization. In addition, we apply feedback control to obtain defect-free ion arrays with desirable lengths.

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