首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Quasi-Classical Trajectory Study of Atom Diatomic Molecule Collisions in Symmetric Hyperspherical Coordinates: The F plus HCl Reaction as a Test Case
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Quasi-Classical Trajectory Study of Atom Diatomic Molecule Collisions in Symmetric Hyperspherical Coordinates: The F plus HCl Reaction as a Test Case

机译:对称超球坐标中原子双原子分子碰撞的准经典轨迹研究:F加HCl反应作为测试案例

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We investigate the reactive dynamics of the triatomic system F + HC1 -> HF + Cl for total angular momentum equal zero and for different low-lying rovibrational states of the diatomic molecule. For each of the initial vibrational quantum numbers, the time evolution of the atom diatom collision process is investigated for a wide range of impact angles and collision energies. To this purpose, the Quasi-Classical Trajectories (QCT) method was implemented in a hyperspherical configuration space. The Hamilton equations of motion are solved numerically in an intermediate effective Cartesian space to exploit the relative simplicity of this intermediate representation. Interatomic interactions are described by a London-Eyring-Polanyi-Sato potential energy surface, specifically developed for the title reaction, and the results of the QCT simulations are discussed in terms of the time-evolution of the hyperangles. The analysis of the collision dynamics using symmetric hyperspherical coordinates provides, in addition to the description in terms of a natural reaction coordinate (the hyperradius), a more striking representation of the exchange dynamics, in terms of the time-dependent probability distribution along the kinematic rotation hyperangle, and a precise distinction between direct and indirect mechanisms of the reaction.
机译:我们研究了三原子系统F + HC1-> HF + Cl的反应动力学,其总角动量等于零,并且针对双原子分子的不同低振动状态。对于每个初始振动量子数,针对大范围的碰撞角和碰撞能量研究了原子硅藻碰撞过程的时间演化。为此,在超球形配置空间中实现了准古典轨迹(QCT)方法。在中间有效笛卡尔空间中以数值方式求解汉密尔顿运动方程,以利用该中间表示的相对简单性。原子间相互作用由专门为标题反应开发的London-Eyring-Polanyi-Sato势能面描述,并根据超角的时间演化讨论了QCT模拟的结果。除了根据自然反应坐标(超半径)进行描述之外,使用对称的超球面坐标对碰撞动力学进行分析还提供了更显着的交换动力学表示,即沿运动学的时间相关概率分布旋转超角度,以及反应的直接和间接机制之间的精确区别。

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