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Spectroscopic detection and state preparation of a single praseodymium ion in a crystal

机译:晶体中单个single离子的光谱检测和状态制备

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The narrow optical transitions and long spin coherence times of rare earth ions in crystals make them desirable for a number of applications ranging from solid-state spectroscopy and laser physics to quantum information processing. However, investigations of these features have not been possible at the single-ion level. Here we show that the combination of cryogenic high-resolution laser spectroscopy with optical microscopy allows one to spectrally select individual praseodymium ions in yttrium orthosilicate. Furthermore, this spectral selectivity makes it possible to resolve neighbouring ions with a spatial precision of the order of 10 nm. In addition to elaborating on the essential experimental steps for achieving this long-sought goal, we demonstrate state preparation and read out of the three ground-state hyperfine levels, which are known to have lifetimes of the order of hundred seconds.
机译:晶体中稀土离子的窄光学跃迁和长自旋相干时间使其成为从固态光谱学和激光物理学到量子信息处理的许多应用的理想之选。但是,无法在单离子水平上研究这些功能。在这里,我们表明,低温高分辨率激光光谱与光学显微镜的结合可以使人们在原硅酸钇中光谱选择单个individual离子。此外,这种光谱选择性使得可以以10 nm数量级的空间精度分辨相邻离子。除了详细说明实现此长期目标的基本实验步骤外,我们还演示了状态准备过程并读取了三个基态超细能级,它们的寿命约为数百秒。

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