论文标题

通过动力学去耦,固体寄生虫中rubidium原子的超旋转相干性时间

Ultralong spin coherence times for rubidium atoms in solid parahydrogen via dynamical decoupling

论文作者

Upadhyay, Sunil, Dargyte, Ugne, Patterson, David, Weinstein, Jonathan D.

论文摘要

相干时间是量子传感,量子信息和量子计算的重要参数。在这项工作中,我们证明了捕获固体寄生虫基质中的rubidium原子合奏的电子自旋连贯性时间。我们探索限制连贯时间的基本物理学。对于将来的应用,包括核自旋的量子感应,这些基质分离的原子的性质非常有前途。如果与有效的单原子读数结合使用,这将使NMR和磁共振成像与寄生虫基质中的碱原子量子传感器相互配合的单分子成像。

Coherence time is an essential parameter for quantum sensing, quantum information, and quantum computation. In this work, we demonstrate electron spin coherence times as long as 0.1 s for an ensemble of rubidium atoms trapped in a solid parahydrogen matrix. We explore the underlying physics limiting the coherence time. The properties of these matrix isolated atoms are very promising for future applications, including quantum sensing of nuclear spins. If combined with efficient single-atom readout, this would enable NMR and magnetic resonance imaging of single molecules cotrapped with alkali-metal atom quantum sensors within a parahydrogen matrix.

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