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首页> 外文期刊>Journal of Modern Optics >Experimental apparatus for overlapping a ground-state cooled ion with ultracold atoms
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Experimental apparatus for overlapping a ground-state cooled ion with ultracold atoms

机译:具有超容器原子的地面冷却离子重叠的实验装置

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Experimental realizations of charged ions and neutral atoms in overlapping traps are gaining increasing interest due to their wide research application ranging from chemistry at the quantum level to quantum simulations of solid state systems. In this paper, we describe our experimental system in whichwe overlap a single ground-state cooled ion trapped in a linear Paul trap with a cloud of ultracold atoms such that both constituents are in the mu K regime. Excess micromotion (EMM) currently limits atom-ion interaction energy to the mK energy scale and above. We demonstrate spectroscopy methods and compensation techniques which characterize and reduce the ion's parasitic EMM energy to the mu K regime even for ion crystals of several ions. We further give a substantial review on the non-equilibrium dynamics which governs atom-ion systems. The non-equilibrium dynamics is manifested by a power law distribution of the ion's energy. We also give an overview on the coherent and non-coherent thermometry tools which can be used to characterize the ion's energy distribution after single to many atom-ion collisions.
机译:由于其广泛的研究应用范围从量子水平到固态系统的量子模拟,因此在重叠陷阱中,带电离子和中性原子的实验性实现越来越兴趣。在本文中,我们描述了我们的实验系统,其中我们将单个地面冷却的离子重叠在线性保罗阱中,其中云原子云,使得两个成分在MU K的状态下。多余的微量影像(EMM)目前将原子离子相互作用能量限制为MK能量尺度和上述。我们展示了光谱法和补偿技术,其表征和将离子的寄生EMM能量降低到MU K后,即使对于几个离子的离子晶体也是如此。我们进一步对治理原子离子系统的非平衡动力学进行了大量审查。非平衡动力学表现为离子能量的电力法分布。我们还概述了相干和非相干的温度工具,该工具可用于在单个到许多原子离子碰撞之后表征离子的能量分布。

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