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氦纳米液滴中同核双原子分子的光解离动力学。Cl₂@(⁴He)N 的情况。

Photodissociation Dynamics of Homonuclear Diatomic Molecules in Helium Nanodroplets. The Case of Cl₂@(⁴He)N.

机构信息

Departament de Química Física i IQTC and ‡Departament d'Estructura i Constituents de la Matèria, Universitat de Barcelona , c/Martí i Franquès, 1, 08028 Barcelona, Spain.

出版信息

J Chem Theory Comput. 2015 Mar 10;11(3):899-906. doi: 10.1021/ct5011642.

Abstract

To investigate the photodissociation dynamics of diatomic homonuclear molecules in helium nanodroplets, a hybrid quantum mechanical theoretical method that combines time dependent density functional theory (helium) and quantum dynamics (molecule) has been developed. This method has been applied to investigate the Cl2 photodissociation arising from the B ← X electronic transition, considering Cl2(v = 0,X)@((4)He)N nanodroplets with N = 50, 100, 200, 300, and 500 (initial configuration for the dynamics). A time scale of a few picoseconds has been determined, and the time required for the dissociating atoms to reach the nanodroplet surface increases with N. Moreover, at the high velocities involved (orders of magnitude above the Landau's critical velocity), an efficient energy exchange between the chlorine atoms and the helium takes place, releasing up to 91% of the energy of the excited diatomics for the bigger nanodroplet considered; and the energy exchange mechanism is the same for all the nanodroplets. Finally, simple (linear) relations for the average Cl final velocity and the (small) number of evaporated He atoms with respect to the radius of the droplets have been reported, together with the existence of confinement resonances. We hope that these results will encourage the experimentalists to investigate this kind of systems.

摘要

为了研究氦纳米液滴中双原子同核分子的光解动力学,我们开发了一种结合了含时密度泛函理论(氦)和量子动力学(分子)的混合量子力学理论方法。该方法已应用于研究源于 B ← X 电子跃迁的 Cl2 光解,考虑了 Cl2(v = 0,X)@((4)He)N 纳米液滴,其中 N = 50、100、200、300 和 500(动力学的初始构型)。确定了几个皮秒的时间尺度,并且解离原子到达纳米液滴表面所需的时间随着 N 的增加而增加。此外,在涉及的高速度(远远超过 Landau 的临界速度)下,氯原子和氦之间发生有效的能量交换,对于所考虑的较大纳米液滴,释放出激发双原子能量的高达 91%;并且能量交换机制对于所有纳米液滴都是相同的。最后,报告了平均 Cl 最终速度和与液滴半径有关的(小)蒸发 He 原子数的简单(线性)关系,以及存在约束共振。我们希望这些结果将鼓励实验家研究这种系统。

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