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Boltzmann wavepacket dynamics of tunnelling of molecules through symmetric and asymmetric energy barriers on non-periodic potential functions

机译:非周期性势函数上穿过对称和不对称能垒的分子隧穿的玻尔兹曼波包动力学

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摘要

This paper describes the results of a computational study of tunnelling of molecules possessing a single large amplitude vibrational mode subject to symmetric and asymmetric non-periodic potential energy functions. The paper compares a time domain description of tunnelling and its consequences for measurable physical properties, with the frequency domain description given in terms of transitions between stationary states largely localised in distinct potential wells. In particular, the behaviour of Boltzmann wavepackets possessing ensemble average characteristics on such potential functions is discussed. As an illustration, it is shown that these wavepackets embody a classical description of the oscillating diple moment components in molecules like cyanamide, ammonia and chlorocyclobutane, which can be reconciled with the quantum mechanical measurement of the relevant transition moments in such cases. Resonance enhancement of tunnelling between inequivalent energy domains of asymmetric potential functions is also described.
机译:本文描述了对具有单个大振幅振动模式的分子进行对称和不对称非周期性势能函数的隧穿计算研究的结果。本文比较了隧穿的时域描述及其对可测量物理性质的影响,而频域描述则根据主要位于不同潜在井中的稳态之间的转换给出。特别是,讨论了具有整体平均特征的玻尔兹曼波包在此类势函数上的行为。如图所示,这些波包体现了分子对氰酰胺,氨和氯环丁烷等分子中振荡二重矩分量的经典描述,在这种情况下,可以与相关跃迁的量子力学测量相符。还描述了不对称势函数的不等能量域之间隧穿的共振增强。

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