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Quantum-state-controlled Penning-ionization reactions between ultracold alkali-metal and metastable helium atoms

机译:超冷碱金属与亚稳态氦原子之间的量子态控制潘宁电离反应

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摘要

In an ultracold, optically trapped mixture of Rb-87 and metastable triplet He-4 atoms we have studied trap loss for different spin-state combinations, for which interspecies Penning ionization is the main two-body loss process. We observe long trapping lifetimes for the purely quartet spin-state combination, indicating strong suppression of Penning-ionization loss by at least two orders of magnitude. For the other spin mixtures we observe short lifetimes that depend linearly on the doublet character of the entrance channel. We compare the extracted loss rate coefficient with recent predictions of multichannel quantum-defect theory for reactive collisions involving a strong exothermic loss channel and find near-universal loss for doublet scattering. Our work demonstrates control of Penning-ionization reactive collisions by internal atomic state preparation.
机译:在Rb-87和亚稳态三重态He-4原子的超冷光学捕获混合物中,我们研究了不同自旋态组合的陷阱损失,其中种间Penning电离是主要的两体损失过程。我们观察到纯四重态自旋态组合的俘获寿命长,表明对Penning电离损失的抑制作用至少有两个数量级。对于其他自旋混合物,我们观察到较短的寿命,该寿命线性地取决于进入通道的双重特征。我们将提取的损失率系数与涉及强放热损失通道的反应性碰撞的多通道量子缺陷理论的最新预测进行比较,并发现双峰散射的近似通用损失。我们的工作证明了通过内部原子态准备控制潘宁电离反应性碰撞。

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