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氢分子与激发态亚稳氦原子低能各向异性分子碰撞描述中无刚性效应的证据。

Evidence of Nonrigidity Effects in the Description of Low-Energy Anisotropic Molecular Collisions of Hydrogen Molecules with Excited Metastable Helium Atoms.

作者信息

Pawlak Mariusz, Żuchowski Piotr S, Moiseyev Nimrod, Jankowski Piotr

机构信息

Faculty of Chemistry, Nicolaus Copernicus University in Toruń, Gagarina 7, 87-100 Toruń, Poland.

Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University in Toruń, Grudziądzka 5, 87-100 Toruń, Poland.

出版信息

J Chem Theory Comput. 2020 Apr 14;16(4):2450-2459. doi: 10.1021/acs.jctc.0c00183. Epub 2020 Mar 19.

Abstract

Cold collisions serve as a sensitive probe of the interaction potential. In the recent study of Klein et al. ( , , 35-38), the one-parameter scaling of the interaction potential was necessary to obtain agreement between theoretical and observed patterns of the orbiting resonances for excited metastable helium atoms colliding with hydrogen molecules. Here, we show that the effect of nonrigidity of the H molecule on the resonant structure, absent in the previous study, is critical to predict the correct positions of the resonances in that case. We have complemented the theoretical description of the interaction potential and revised reaction rate coefficients by proper inclusion of the flexibility of the molecule. The calculated reaction rate coefficients are in remarkable agreement with the experimental data without empirical adjustment of the interaction potential. We have shown that even state-of-the-art calculations of the interaction energy cannot ensure agreement with the experiment if such an important physical effect as flexibility of the interacting molecule is neglected. Our findings about the significance of the nonrigidity effects can be especially crucial in cold chemistry, where the quantum nature of molecules is pronounced.

摘要

冷碰撞可作为相互作用势的灵敏探针。在Klein等人最近的研究(参考文献,,35 - 38)中,相互作用势的单参数标度对于使激发的亚稳氦原子与氢分子碰撞时轨道共振的理论模式与观测模式达成一致是必要的。在此,我们表明,H分子的非刚性对共振结构的影响(先前研究中未考虑)对于预测该情况下共振的正确位置至关重要。我们通过适当考虑分子的灵活性,完善了相互作用势的理论描述并修正了反应速率系数。计算得到的反应速率系数与实验数据显著吻合,无需对相互作用势进行经验调整。我们已经表明,如果忽略诸如相互作用分子的灵活性这样重要的物理效应,即使是最先进的相互作用能计算也无法确保与实验结果一致。我们关于非刚性效应重要性的发现对于冷化学尤其关键,因为在冷化学中分子的量子特性很显著。

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