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Cold neutral atoms via charge exchange from excited state positronium: a proposal

机译:通过激发态正电子的电荷交换产生冷中性原子:一个提议

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We present a method for generating cold neutral atoms via charge exchange reactions between trapped ions and Rydberg positronium. The high charge exchange reaction cross section leads to efficient neutralisation of the ions and since the positronium-ion mass ratio is small, the neutrals do not gain appreciable kinetic energy in the process. When the original ions are cold the reaction produces neutrals that can be trapped or further manipulated with electromagnetic fields. Because a wide range of species can be targeted we envisage that our scheme may enable experiments at low temperature that have been hitherto intractable due to a lack of cooling methods. We present an estimate for achievable temperatures, neutral number and density in an experiment where the neutrals are formed at a milli-Kelvin temperature from either directly or sympathetically cooled ions confined on an ion chip. The neutrals may then be confined by their magnetic moment in a co-located magnetic minimum well also formed on the chip. We discuss general experimental requirements.
机译:我们提出了一种通过被困离子与里德堡正电子之间的电荷交换反应生成冷中性原子的方法。高电荷交换反应截面导致离子的有效中和,并且由于posit离子质量比小,中性分子在该过程中不会获得可观的动能。当原始离子变冷时,反应会产生中性离子,该中性离子可以被电磁场捕获或进一步操纵。因为可以针对多种物种,所以我们设想我们的方案可以使在低温下的实验成为可能,由于缺乏冷却方法,这些实验迄今为止很难进行。我们提出了一个实验中可达到的温度,中性数和密度的估计值,其中中性是在密尔开尔文温度下,由直接或同情冷却的离子限制在离子芯片上形成的。然后,中性点可以通过它们的磁矩限制在同样位于芯片上的同位置磁性最小阱中。我们讨论了一般的实验要求。

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