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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >An alternative phase-space distribution to sample initial conditions for classical dynamics simulations
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An alternative phase-space distribution to sample initial conditions for classical dynamics simulations

机译:用于经典动力学模拟的初始条件采样的替代相空间分布

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A new quantum-type phase-space distribution is proposed in order to sample initial conditions for classical trajectory simulations. The phase-space distribution is obtained as the modulus of a quantum phase-space state of the system, defined as the direct product of the coordinate and momentum representations of the quantum initial state. the distribution is tested by sampling initial conditions which reproduce the initial state of the Ar-HCl cluster prepared by ultraviolet excitation, and by simulating the photodissociation dynamics by classical trajectories. The results are compared with those of a wave packet calculation, and with a classical simulation using an initial phase-space distribution recently suggested. A better agreement is found between the classical and the quantum predictions with the present phase-space distribution, as compared with the previous one. This improvement is attributed to the fact that the phase-space distribution propagated classically in this work resembles more closely the shape of the wave packet propaged quantum mechanically.
机译:为了对经典轨迹模拟的初始条件进行采样,提出了一种新的量子型相空间分布。获得相空间分布作为系统的量子相空间状态的模量,该模量被定义为量子初始状态的坐标和动量表示的直接乘积。通过采样初始条件对分布进行测试,该初始条件可再现通过紫外线激发制备的Ar-HCl团簇的初始状态,并通过经典轨迹模拟光解离动力学。将结果与波包计算的结果进行比较,并与最近建议的使用初始相空间分布的经典模拟进行比较。与前一个相比,在具有当前相空间分布的经典预测和量子预测之间找到了更好的协议。这种改进归因于以下事实:在这项工作中,经典传播的相空间分布更类似于机械地量子化的波包形状。

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