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Millikelvin Reactive Collisions between Sympathetically Cooled Molecular Ions and Laser-Cooled Atoms in an Ion-Atom Hybrid Trap

机译:离子-原子混合阱中交感冷却分子离子与激光冷却原子之间的Millikelvin反应碰撞

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We report on a study of cold reactive collisions between sympathetically cooled molecular ions and laser-cooled atoms in an ion-atom hybrid trap. Chemical reactions were studied at average collision energies (E_(coll))/k_B apporox 20 mK, about 2 orders of magnitude lower than has been achieved in previous experiments with molecular ions. Choosing N_2~+ + Rb as a prototypical system, we find that the reaction rate is independent of the collision energy within the range studied, but strongly dependent on the internal state of Rb. Highly efficient charge exchange four times faster than the Langevin rate was observed with Rb in the excited (5p) ~2p_(3/2) state. This observation is rationalized by a capture process dominated by the charge-quadrupole interaction and a near resonance between the entrance and exit channels of the system. Our results provide a test of classical models for reactions of molecular ions at the lowest energies reached thus far.
机译:我们报告了在离子-原子杂化陷阱中,同情冷却的分子离子与激光冷却的原子之间的冷反应性碰撞的研究。化学反应是在平均碰撞能量(E_(coll))/ k_B约20 mK的条件下研究的,比以前用分子离子进行的实验低约2个数量级。选择N_2〜+ + Rb作为原型系统,我们发现反应速率与研究范围内的碰撞能量无关,但强烈取决于Rb的内部状态。在激发态(5p)〜2p_(3/2)下,Rb的电荷交换效率是Langevin速率的四倍。通过以电荷-四极相互作用和系统的入口和出口通道之间的近共振为主导的捕获过程,可以使这种观察合理化。我们的结果为迄今达到最低能量的分子离子反应的经典模型提供了测试。

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