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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum theory of ultracold atom-ion collisions
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Quantum theory of ultracold atom-ion collisions

机译:超冷原子-离子碰撞的量子理论

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We study atom-ion scattering in the ultracold regime. To this aim, an analytical model based on the multichannel quantum-defect formalism is developed and compared to close-coupled numerical calculations. We investigate the occurrence of magnetic Feshbach resonances, focusing on the specific ~(40)Ca~++Na system. The presence of several resonances at experimentally accessible magnetic fields should allow the atom-ion interaction to be precisely tuned. A fully quantum-mechanical study of charge-exchange processes shows that charge-exchange rates should remain small even in the presence of resonance effects. Most of our results can be cast in a system-independent form and are important for the realization of charge-neutral ultracold systems.
机译:我们研究超冷状态下的原子离子散射。为此,开发了一种基于多通道量子缺陷形式主义的分析模型,并将其与紧密耦合的数值计算进行了比较。我们研究了特定的〜(40)Ca〜++ Na系统,研究了Feshbach共振的发生。在实验上可接近的磁场下,几个共振的存在将使原子-离子相互作用得以精确调节。电荷交换过程的完全量子力学研究表明,即使存在共振效应,电荷交换速率也应保持很小。我们的大多数结果都可以独立于系统的形式进行,对于实现电荷中性的超冷系统非常重要。

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