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非常低温度下的离子-分子化学:库仑结晶离子与速度选择中性分子之间的冷化学反应。

Ion-molecule chemistry at very low temperatures: cold chemical reactions between Coulomb-crystallized ions and velocity-selected neutral molecules.

机构信息

Department of Chemistry, University of Oxford, Chemistry Research Laboratory, Mansfield Road, Oxford OX1 3TA, United Kingdom.

出版信息

Faraday Discuss. 2009;142:73-91; discussion 93-111. doi: 10.1039/b818733a.

Abstract

The recent development of a range of techniques for producing cold atoms and molecules at very low translational temperatures T < or = 1 K has provided the opportunity to investigate collisional processes in a new physical regime. We have recently presented a new experimental method to study low-temperature reactive collisions between translationally cold ions and neutral molecules (S. Willitsch et al., Phys. Rev. Lett. 2008, 100, 043203). Our technique relies on the combination of a quadrupole-guide velocity selector for the generation of translationally cold neutral molecules with a facility to produce ordered structures of cold ions (Coulomb crystals) by laser cooling in a linear quadrupole ion trap. The strong localisation of the ions in the trap in combination with the high sensitivity of laser-induced-fluorescence detection enabled us to study chemical reactions on the single-particle level, down to temperatures of T approximately 1 K. In the current paper, we present a detailed characterisation of the scope and limitations of this method based on our study of the reaction between laser-cooled Ca+ ions and velocity-selected CH3F molecules. The properties of our cold-neutrals source and the dependence of the measured rate constant on the shape of the Coulomb crystals, trapping and laser-cooling parameters are discussed. An extension of our technique for the study of low-temperature reactions with sympathetically cooled molecular ions (translational temperature T > 10 mK) is presented and first results on the charge-transfer reaction between OCS+ and ND3 are discussed. Finally, perspectives for further developments of our method are explored.

摘要

近年来,一系列在非常低的平移温度 T <或= 1 K 下产生冷原子和分子的技术的发展,为在新的物理领域研究碰撞过程提供了机会。我们最近提出了一种新的实验方法来研究低温下冷离子与中性分子之间的反应性碰撞(S. Willitsch 等人,Phys. Rev. Lett. 2008, 100, 043203)。我们的技术依赖于用于产生平移冷中性分子的四极引导速度选择器与用于通过在线性四极离子阱中激光冷却产生冷离子有序结构(库仑晶体)的设备的组合。离子在陷阱中的强烈局部化与激光诱导荧光检测的高灵敏度相结合,使我们能够在单个粒子水平上研究化学反应,直到 T 约为 1 K 的温度。在当前的论文中,我们根据我们对激光冷却 Ca+离子与速度选择的 CH3F 分子之间反应的研究,对该方法的范围和局限性进行了详细的描述。讨论了我们的冷中性源的性质以及测量的速率常数对库仑晶体、捕获和激光冷却参数形状的依赖性。提出了我们的技术用于研究与受同情冷却的分子离子的低温反应的扩展,并讨论了 OCS+和 ND3 之间的电荷转移反应的初步结果。最后,探讨了我们的方法进一步发展的前景。

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