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Vibrational de-excitation of v=1 H_2 during collisions with a Cu(100) surface

机译:与Cu(100)表面碰撞时v = 1 H_2的振动去激励

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The dynamics of vibrational de-excitation of v 1 H.1 on a Cu(100) surface is studied using a six-dimensional quantum wave packet method. The de-excitation probability increases with increasing collision energy and initial molecular rotational quantum number, I. A strong dependence on molecular orientation is found with molecules rotating with helicoptering motion (in, j) exhibiting larger de-excitation probabilities, in general, than those with cartwheeling motion (m_j=0). The final j-state distribution and quadrupole alignment are computed as functions of collision energy. The competition between vibrational de-excitation and other dynamic processes during the collision is analyzed. The total de-excitation probability is in good agreement with vibrational inelasticities from experiment but the calculations overestimate the population of scattered H1 in (v 0,j) for largej.
机译:使用六维量子波包方法研究了v(1)H.1在Cu(100)表面上的振动去激励动力学。消除激发的概率随碰撞能量和初始分子旋转量子数I的增加而增加。发现,随着直升机运动(in,j)旋转的分子表现出更大的消除激发概率,因此对分子取向的依赖性很大。随车运动(m_j = 0)。最终的j状态分布和四极对准是根据碰撞能量计算的。分析了碰撞过程中振动去激励与其他动态过程之间的竞争。总的失激概率与实验中的振动非弹性很好地吻合,但是计算结果高估了大j在(v 0,j)中散布的H1的数量。

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