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Optical and spin-coherence properties of rubidium atoms trapped in solid neon
Physical Review A ( IF 2.6 ) Pub Date : 2021-09-21 , DOI: 10.1103/physreva.104.032611
Ugne Dargyte , David M. Lancaster , Jonathan D. Weinstein

In this work, we measure the properties of ensembles of rubidium atoms trapped in solid neon that are relevant for use as quantum sensors of magnetic fields: the spin coherence of the trapped atoms and the ability to optically control and measure their spin state. We use the rubidium atoms as an AC magnetometer—by employing an appropriate dynamical decoupling sequence—and demonstrate NMR detection of Ne21 atoms co-trapped in the neon matrix.

中文翻译:

固体氖中铷原子的光学和自旋相干特性

在这项工作中,我们测量了被困在固体氖中的铷原子系综的特性,这些特性与用作磁场的量子传感器相关:被困原子的自旋相干性以及光学控制和测量其自旋状态的能力。我们使用铷原子作为交流磁力计——通过采用适当的动态去耦序列——并展示了 NMR 检测ne21 原子共同捕获在氖矩阵中。
更新日期:2021-09-21
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