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Intermolecular vibrations of large ammonia clusters from helium atom scattering

机译:氦原子散射引起的大氨团簇的分子间振动

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The excitation of the low-energy intermolecular modes of ammonia clusters by helium atom scattering has been calculated using classical trajectories. The energy transfer is investigated as a function of scattering angle (from 10 deg to 90 deg), collision energy (94.8 and 50.5 meV), cluster size (n = 18, 100, 1000), and cluster temperature (T_c = 1 K, 30-50 K, and 105 K). It is observed that predominantly the mode at 7 meV to a lesser extent also the one at 12 meV are excited. These are surface modes that mainly originate from the angular motion of three adjacent N atoms. The excitation is nearly independent of the cluster size and the probability for multiphonon excitation steadily increases with increasing deflection angle. This trend is even strengthened by increasing the collision energy. The role of the cluster temperature is to broaden the energy transfer distribution with increasing values. the calculations are compared with previous and new measurements presented here of the double-differential cross section (d#sigma#/d#omega#)_(#DELTA#E) of one energy. While the general trends in the angular and energy dependence could be well reproduced, the correct cluster temperature was crucial in getting good agreement at the lower collision energy for n = 100. At the higher collision energy, the large energy transfer is not reproduced, probably a shortcoming of the potential models to account correctly for the anharmonicity of the strong multiquantum excitation.
机译:使用经典轨迹计算了氦原子散射对氨团簇的低能分子间模式的激发。研究了能量转移与散射角(从10度到90度),碰撞能量(94.8和50.5 meV),团簇尺寸(n = 18、100、1000)和团簇温度(T_c = 1 K, 30-50 K和105 K)。观察到主要是在7meV的模式被激发,而在12meV的模式也被激发。这些是主要来自三个相邻N原子的角运动的表面模式。激发几乎与团簇大小无关,并且多声子激发的可能性随着偏转角的增加而稳定增加。这种趋势甚至可以通过增加碰撞能量来加强。团簇温度的作用是随着值的增加而扩大能量传递分布。将计算结果与此处介绍的一种能量的双微分截面(d#sigma#/ d#omega#)_(#DELTA#E)的先前和新测量结果进行比较。虽然可以很好地再现角度和能量依赖性的一般趋势,但是正确的团簇温度对于在n = 100的较低碰撞能量下获得良好的一致性至关重要。在较高的碰撞能量下,可能无法复制大的能量传递潜在模型的缺点,无法正确说明强多量子激发的非谐性。

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