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在高摩擦极限下沿反应坐标估计扩散率:激光诱导成核中脉冲时间的见解。

Estimating diffusivity along a reaction coordinate in the high friction limit: Insights on pulse times in laser-induced nucleation.

机构信息

Department of Chemical Engineering, University of California, Santa Barbara, California 93106-5080, USA.

出版信息

J Chem Phys. 2009 Dec 14;131(22):224112. doi: 10.1063/1.3268704.

Abstract

In the high friction limit of Kramers' theory, the diffusion coefficient for motion along the reaction coordinate is a crucial parameter in determining reaction rates from mean first passage times. The Einstein relation between mean squared displacement, time, and diffusivity is inaccurate at short times because of ballistic motion and inaccurate at long times because trajectories drift away from maxima in the potential of mean force. Starting from the Smoluchowski equation for a downward parabolic barrier, we show how drift induced by the potential of mean force can be included in estimating the diffusivity. A modified relation between mean squared displacement, time, and diffusivity now also includes a dependence on the barrier curvature. The new relation provides the diffusivity at the top of the barrier from a linear regression that is analogous to the procedure commonly used with Einstein's relation. The new approach has particular advantages over previous approaches when evaluations of the reaction coordinate are costly or when the reaction coordinate cannot be differentiated to compute restraining forces or velocities. We use the new method to study the dynamics of barrier crossing in a Potts lattice gas model of nucleation from solution. Our analysis shows that some current hypotheses about laser-induced nucleation mechanisms lead to a nonzero threshold laser pulse duration below which a laser pulse will not affect nucleation. We therefore propose experiments that might be used to test these hypotheses.

摘要

在 Kramers 理论的高摩擦极限下,反应坐标上的扩散系数是根据平均首次通过时间确定反应速率的关键参数。由于弹道运动,平均平方位移、时间和扩散系数之间的爱因斯坦关系在短时间内不准确,并且由于轨迹从平均力势的最大值漂移,在长时间内也不准确。从向下抛物势垒的 Smoluchowski 方程出发,我们展示了如何将平均力势引起的漂移纳入扩散系数的估计中。现在,修正后的平均平方位移、时间和扩散系数之间的关系也包括了对势垒曲率的依赖性。新关系从线性回归中提供了势垒顶部的扩散系数,该回归类似于通常与爱因斯坦关系一起使用的程序。当评估反应坐标代价高昂或无法区分反应坐标以计算约束力或速度时,新方法比以前的方法具有特殊优势。我们使用新方法研究了溶液成核的 Potts 格子气体模型中势垒穿越的动力学。我们的分析表明,一些关于激光诱导成核机制的当前假设导致存在一个非零的激光脉冲持续时间阈值,低于该阈值,激光脉冲将不会影响成核。因此,我们提出了一些可能用于测试这些假设的实验。

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