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Quantum Spin Dynamics of Individual Neutral Impurities Coupled to a Bose-Einstein Condensate

机译:单个中性杂质与玻色-爱因斯坦凝聚物耦合的量子自旋动力学

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摘要

We report on spin dynamics of individual, localized neutral impurities immersed in a Bose-Einstein condensate. Single cesium atoms are transported into a cloud of rubidium atoms and thermalize with the bath, and the ensuing spin exchange between localized impurities with quasispin F-i = 3 and bath atoms with F-b = 1 is resolved. Comparing our data to numerical simulations of spin dynamics, we find that, for gas densities in the Bose-Einstein condensate regime, the dynamics is dominated by the condensed fraction of the cloud. We spatially resolve the density overlap of impurities and gas by the spin population of impurities. Finally, we trace the coherence of impurities prepared in a coherent superposition of internal states when coupled to a gas of different densities. For our choice of states, we show that, despite high bath densities and, thus, fast thermalization rates, the impurity coherence is not affected by the bath, realizing a regime of sympathetic cooling while maintaining internal state coherence. Our work paves the way toward the nondestructive probing of quantum many-body systems via localized impurities.
机译:我们报告了浸入Bose-Einstein冷凝物中的单个局部中性杂质的自旋动力学。单个铯原子被运输到a原子云中并在镀液中发生热化,从而解决了quasispin F-i = 3的局部杂质与F-b = 1的镀液原子之间随之发生的自旋交换。将我们的数据与自旋动力学的数值模拟进行比较,我们发现,对于Bose-Einstein凝结态下的气体密度,动力学主要由云的凝结部分控制。我们通过杂质的自旋种群在空间上解决了杂质和气体的密度重叠问题。最后,我们追踪了当与不同密度的气体耦合时,以内部状态的一致叠加方式制备的杂质的一致性。对于我们选择的状态,我们表明,尽管熔池密度高,因此热化速率快,杂质相干性不受熔池的影响,在保持内部状态相干性的同时实现了交感冷却。我们的工作为通过局部杂质实现量子多体系统的无损探伤铺平了道路。

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  • 来源
    《Physical review letters》 |2018年第13期|130403.1-130403.6|共6页
  • 作者单位

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

    Tech Univ Kaiserslautern, Dept Phys, Kaiserslautern, Germany;

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