论文标题
浸入Bose-Einstein冷凝物中的单个冷离子的运输
Transport of a single cold ion immersed in a Bose-Einstein condensate
论文作者
论文摘要
我们研究了玻色网凝结物中单个低能离子杂质的转运动力学。从单个Rydberg激发开始,将杂质植入了冷凝物中,该兴奋是通过一系列快速电场脉冲电离,旨在最大程度地减少离子的初始动能。使用小的电偏见场,我们研究了杂质的随后碰撞动力学受外力的影响。快速离子原子的碰撞速率是由于致密的宿主气体和大的离子原子散射横截面引起的,使我们能够研究仅在数十微秒内的杂质频繁碰撞的制度。基于顺序兰格文碰撞的随机轨迹模拟的测量值比较表明杂质的扩散传输特性,并使我们能够测量其迁移率。此外,使用自由且未捕获的离子的工作提供了独特的方法来区分单个实现,其中杂质通过三体重组会受到非弹性分子离子形成。我们研究了这些事件的冷化学性质,并找到了随后产生的分子的反振荡猝灭碰撞的证据。我们的结果为研究超速物质中带电的量子杂质的动力学开辟了一条新的途径。
We investigate transport dynamics of a single low-energy ionic impurity in a Bose-Einstein condensate. The impurity is implanted into the condensate starting from a single Rydberg excitation, which is ionized by a sequence of fast electric field pulses aiming to minimize the ion's initial kinetic energy. Using a small electric bias field, we study the subsequent collisional dynamics of the impurity subject to an external force. The fast ion-atom collision rate, stemming from the dense degenerate host gas and the large ion-atom scattering cross section, allows us to study a regime of frequent collisions of the impurity within only tens of microseconds. Comparison of our measurements with stochastic trajectory simulations based on sequential Langevin collisions indicate diffusive transport properties of the impurity and allows us to measure its mobility. Furthermore, working with a free and untrapped ion provides unique means to distinguish single realizations, where the impurity is subject to inelastic molecular-ion formation via three-body recombination. We study the cold chemistry of these events and find evidence for subsequent rovibrational quenching collisions of the produced molecule. Our results open a novel path to study dynamics of charged quantum impurities in ultracold matter.