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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Observation of Zitterbewegung in a spin-orbit-coupled Bose-Einstein condensate
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Observation of Zitterbewegung in a spin-orbit-coupled Bose-Einstein condensate

机译:自旋轨道耦合玻色-爱因斯坦凝聚物中Zitterbewegung的观测

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Spin-orbit-coupled ultracold atoms provide an intriguing new avenue for the study of rich spin dynamics in superfluids. In this Rapid Communication, we observe Zitterbewegung, the simultaneous velocity (thus position) and spin oscillations, of neutral atoms between two spin-orbit-coupled bands in a Bose-Einstein condensate (BEC) through sudden quantum quenches of the Hamiltonian. The observed Zitterbewegung oscillations are perfect on a short time scale but gradually damp out on a long time scale, followed by sudden and strong heating of the BEC. As an application, we also demonstrate how Zitterbewegung oscillations can be exploited to populate the upper spin-orbit band and observe a subsequent dipole motion. Our experimental results are corroborated by a theoretical and numerical analysis and showcase the great flexibility that ultracold atoms provide for investigating rich spin dynamics in superfluids.
机译:自旋轨道耦合的超冷原子为研究超流体中丰富的自旋动力学提供了一个有趣的新途径。在本快速通讯中,我们通过哈密顿量的突然量子猝灭,观察了玻色-爱因斯坦凝聚物(BEC)中两个自旋轨道耦合带之间的中性原子同时发生的速度(因此位置)和自旋振荡的Zitterbewegung。所观察到的Zitterbewegung振荡在短时间范围内是完美的,但在长时间范围内会逐渐衰减,随后BEC突然强烈加热。作为应用,我们还演示了如何利用Zitterbewegung振荡来填充自旋轨道上带并观察随后的偶极运动。我们的实验结果通过理论和数值分析得到证实,并显示了超冷原子为研究超流体中丰富的自旋动力学提供的巨大灵活性。

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