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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Exact Solutions for Distributions of First-Passage, Direct-Transit, and Looping Times in Symmetric Cusp Potential Barriers and Wells
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Exact Solutions for Distributions of First-Passage, Direct-Transit, and Looping Times in Symmetric Cusp Potential Barriers and Wells

机译:关于对称CUSP潜在障碍和井分布的精确解决方案。

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摘要

For a particle diffusing in one dimension, the distribution of its first-passage time from point a to point b is determined by the durations of the particle trajectories that start from point a and are terminated as soon as they touch point b for the first time. Any such trajectory consists of looping and direct-transit segments. The latter is the final part of the trajectory that leaves point a and goes to point b without returning to point a. The rest of the trajectory is the looping segment that makes numerous loops which begin and end at the same point a without touching point b. In this article we discuss general relations between the first-passage time distribution and those for the durations of the two segments. These general relations allow us to find exact solutions for the Laplace transforms of the distributions of the first-passage, direct-transit, and looping times for transitions between two points separated by a symmetric cusp potential barrier or well of arbitrary height and depth, respectively. The obtained Laplace transforms are inverted numerically, leading to nontrivial dependences of the resulting distributions on the barrier height and the well depth.
机译:对于在一个尺寸中的粒子中扩散,从点A到点B的第一通道时间分布由从点A开始的粒子轨迹的持续时间确定,并且一旦它们第一次触摸B点就立即终止。任何此类轨迹都包括循环和直转段。后者是轨迹的最后一部分,即留下一个点A并进入B点B而不返回点。轨迹的其余部分是循环段,其使得许多循环开始和结束在同一点A而不触摸点B.在本文中,我们讨论了第一段时间分布与两部分持续时间之间的一般关系。这些一般关系允许我们找到第一通道,直接传输和循环时间的Laplace变换的精确解决方案,以便分别由对称的CUSP潜在屏障或任意高度和深度井分开的两个点之间的过渡。所获得的拉普拉斯变换在数值上倒置,导致所得分布对屏障高度和井深的不变依赖性。

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