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首页> 外文期刊>The Journal of Chemical Physics >Amplitude of jump motion signatures in classical vibration-jump dynamics
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Amplitude of jump motion signatures in classical vibration-jump dynamics

机译:典型振动跳跃动态中跳跃运动签名的幅度

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The classical Langevin dynamics of a particle in a periodic potential energy landscape are studied via the intermediate scattering function (ISF). By construction, the particle performs coupled vibrational and activated jump motion with a wide separation of the vibrational period and the mean residence time between jumps. The long time limit of the ISF is a decaying tail proportional to the function that describes ideal jump motion in the absence of vibrations. The amplitude of the tail is unity in idealized jump dynamics models but is reduced from unity by the intra-well motion. Analytical estimates of the amplitude of the jump motion signature are provided by assuming a factorization of the conditional probability density of the particle position at long times, motivated by the separation of time scales associated with inter-cell and intra-cell motion. The assumption leads to a factorization of the ISF at long correlation times, where one factor is an ideal jump motion signature and the other component is the amplitude of the signature. The amplitude takes the form of a single-particle anharmonic Debye-Waller factor. The factorization approximation is exact at the diffraction conditions associated with the periodic potential. Numerical simulations of the Langevin equation in one and two spatial dimensions confirm that for a strongly corrugated potential the analytical approximation provides a good qualitative description of the trend in the jump signature amplitude, between the points where the factorization is exact. Published by AIP Publishing.
机译:在周期性势能景观颗粒的经典朗之万动力学经由中间散射功能(ISF)的研究。通过构造,粒子进行耦合振动和活化的跳跃运动与振动周期的宽分离和跳跃之间的平均停留时间。的ISF的长时限是一个衰减尾部成比例描述在没有振动的理想跳跃运动的功能。尾部的振幅是在理想化的跳跃动力学模型统一而是由井内运动被从统一减小。跳跃运动标志的幅度的分析估计是通过假设在长的时间的粒子位置的条件概率密度的因式分解,通过与小区间和小区内运动相关联的时间尺度的分离动机提供。假设导致在长相关倍ISF的分解,其中的一个因素是的理想跳跃运动标志及其它组分是签名的幅度。振幅取单粒子非谐德拜 - 沃勒因子的形式。工厂化近似精确时间与周期势相关的衍射条件。在一个和两个空间维度的朗之万方程的数值模拟结果证实了强烈的波纹势解析近似提供了跳跃签名振幅走势的一个很好的定性描述,这里的分解是确切点之间。通过AIP发布发布。

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