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MOLECULAR DYNAMICS STUDY OF ENERGY TRANSFER IN BINARY COLLISIONS OF WATER MOLECULES

机译:水分子二元碰撞中能量转移的分子动力学研究

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Collisional energy transfer between two water molecules, one highly energized (reactant) and another thermally equilibrated (medium) molecule, has been studied by classical molecular dynamics simulation over a range of excitation energies and medium temperatures. The focus is on the dependence of the energy transfer efficiency on the excitation energy, the medium temperature, and the gross features as well as the details of the interaction between the molecules. High quality interaction potentials based on experimental data or quantum chemical calculations are used and the results are compared with those obtained by simpler potentials constructed from Lennard-Jones pair potentials and point charges. The dipolar contribution to the interaction is varied and the molecules are partially or fully deuterated. The strong electrostatic interaction is found to yield efficient energy transfer for small impact parameters but also a large cross section for water collisions. The energy transfer efficiency is sensitive to the detailed form of the interaction. However, if somewhat lower accuracy can be accepted then simple potentials can be used. The energy transfer can be well fitted by a conditional probability density based on a statistical model of equilibration among subsets of the degrees of freedom in the colliding molecules. Rotational energy transfer is far more efficient than vibrational energy transfer. (C) 1996 American Institute of Physics. [References: 49]
机译:已通过经典分子动力学模拟研究了在一系列激发能和中等温度下两个水分子(一个高能(反应物)和另一个热平衡(中)分子)之间的碰撞能量转移。重点在于能量转移效率对激发能,介质温度,总体特征以及分子之间相互作用的细节的依赖性。使用基于实验数据或量子化学计算的高质量相互作用电势,并将结果与​​通过Lennard-Jones对电势和点电荷构造的简单电势获得的结果进行比较。偶极对相互作用的贡献是变化的,分子部分或完全氘化。发现强的静电相互作用对于较小的冲击参数产生有效的能量传递,但是对于水碰撞也产生较大的横截面。能量转移效率对相互作用的详细形式敏感。但是,如果可以接受较低的精度,则可以使用简单的电势。基于碰撞分子自由度子集之间平衡的统计模型,可以通过条件概率密度很好地拟合能量传递。旋转能量传递比振动能量传递有效得多。 (C)1996年美国物理研究所。 [参考:49]

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