论文标题
冷原子 - 离子碰撞中的陷阱辅助复合物
Trap-assisted complexes in cold atom-ion collisions
论文作者
论文摘要
从理论上讲,我们研究了原子离子碰撞中复合物的陷阱辅助形成及其对被困离子稳定性的影响。 PAUL陷阱的时间依赖性潜力通过减少原子的能量来促进临时复合物的形成,该原子的能量暂时卡在原子离子电位中。结果,这些复合物通过三体重组显着影响导致分子离子形成的末日反应。我们发现,在沉重原子的系统中,复杂的形成更为明显,但是质量对瞬时状态的寿命没有影响。取而代之的是,复杂的形成速率在很大程度上取决于离子微动的振幅。我们还表明,即使在不依赖时间的谐波陷阱的情况下,复杂的形成仍然存在。在这种情况下,我们发现比Paul Trap更高的形成率和更长的寿命,这表明原子-Ion络合物在光学陷阱中的原子 - 离子混合物中起着至关重要的作用。
We theoretically investigate the trap-assisted formation of complexes in atom-ion collisions and their impact on the stability of the trapped ion. The time-dependent potential of the Paul trap facilitates the formation of temporary complexes by reducing the energy of the atom, which gets temporarily stuck in the atom-ion potential. As a result, those complexes significantly impact termolecular reactions leading to molecular ion formation via three-body recombination. We find that complex formation is more pronounced in systems with heavy atoms, but the mass has no influence on the lifetime of the transient state. Instead, the complex formation rate strongly depends on the amplitude of the ion's micromotion. We also show that complex formation persists even in the case of a time-independent harmonic trap. In this case, we find higher formation rates and longer lifetimes than the Paul trap, indicating that the atom-ion complex plays an essential role in atom-ion mixtures in optical traps.