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近共传播光束中 NO(v = 10) 态 - 态碰撞的微分截面

Differential Cross Sections for State-to-State Collisions of NO( v = 10) in Near-Copropagating Beams.

作者信息

Amarasinghe Chandika, Li Hongwei, Perera Chatura A, Besemer Matthieu, van der Avoird Ad, Groenenboom Gerrit C, Xie Chengjian, Guo Hua, Suits Arthur G

机构信息

Department of Chemistry , University of Missouri , Columbia , Missouri 65211 , United States.

Radboud University , Institute for Molecules and Materials , Heyendaalseweg 135 , 6525 AJ Nijmegen , The Netherlands.

出版信息

J Phys Chem Lett. 2019 May 16;10(10):2422-2427. doi: 10.1021/acs.jpclett.9b00847. Epub 2019 Apr 30.

Abstract

State-to-state differential cross sections for rotationally inelastic collisions of vibrationally excited NO with Ar have been measured in a near-copropagating crossed beam experiment at collision energies of 530 and 30 cm. Stimulated emission pumping (SEP) to prepare NO in specific rovibrational levels is coupled with direct-current slice velocity map imaging to obtain a direct measurement of the differential cross sections. The use of nearly copropagating beams to achieve low NO-Ar collision energies and broad collision energy tuning capability are also demonstrated. The experimental differential cross sections (DCSs) for NO in v = 10 in specific rotational and parity states are compared with the corresponding DCSs predicted for NO in v = 0 obtained from quantum mechanical close coupling calculations to highlight the differences between the NO( v = 10)-Ar and NO( v = 0)-Ar interaction potentials.

摘要

在碰撞能量为530和30厘米的近共传播交叉束实验中,测量了振动激发的一氧化氮(NO)与氩(Ar)的转动非弹性碰撞的态-态微分截面。利用受激发射泵浦(SEP)将NO制备到特定的振转能级,并结合直流切片速度映射成像,以直接测量微分截面。还展示了使用近共传播束来实现低NO-Ar碰撞能量和宽碰撞能量调谐能力。将处于特定转动和宇称状态的v = 10的NO的实验微分截面(DCS)与通过量子力学紧密耦合计算得到的v = 0的NO的相应DCS进行比较,以突出NO(v = 10)-Ar和NO(v = 0)-Ar相互作用势之间的差异。

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