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Dynamic pathways to mediate reactions buried in thermal fluctuations. I. Time-dependent normal form theory for multidimensional Langevin equation

机译:介导反应的动态路径隐藏在热波动中。 I.多维Langevin方程的时变范式理论

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摘要

We present a novel theory which enables us to explore the mechanism of reaction selectivity and robust functions in complex systems persisting under thermal fluctuation. The theory constructs a nonlinear coordinate transformation so that the equation of motion for the new reaction coordinate is independent of the other nonreactive coordinates in the presence of thermal fluctuation. In this article we suppose that reacting systems subject to thermal noise are described by a multidimensional Langevin equation without a priori assumption for the form of potential. The reaction coordinate is composed not only of all the coordinates and velocities associated with the system (solute) but also of the random force exerted by the environment (solvent) with friction constants. The sign of the reaction coordinate at any instantaneous moment in the region of a saddle determines the fate of the reaction, i.e., whether the reaction will proceed through to the products or go back to the reactants. By assuming the statistical properties of the random force, one can know a priori a well-defined boundary of the reaction which separates the full position-velocity space in the saddle region into mainly reactive and mainly nonreactive regions even under thermal fluctuation. The analytical expression of the reaction coordinate provides the firm foundation on the mechanism of how and why reaction proceeds in thermal fluctuating environments.
机译:我们提出了一种新颖的理论,使我们能够探索在热波动下持续存在的复杂系统中反应选择性和鲁棒功能的机理。该理论构造了一个非线性坐标变换,以便在存在热波动的情况下,新反应坐标的运动方程独立于其他非反应坐标。在本文中,我们假设受热噪声影响的反应系统是由多维Langevin方程描述的,而没有先验假设势能的形式。反应坐标不仅由与系统(溶质)相关的所有坐标和速度组成,还由环境(溶剂)以摩擦常数施加的随机力组成。在鞍形区域中的任何瞬时时刻,反应坐标的符号决定了反应的命运,即反应是进行到产物还是返回到反应物。通过假设随机力的统计特性,人们可以先验地知道反应的明确边界,即使在热波动下,该边界也将鞍形区域中的整个位置-速度空间划分为主要是反应性区域和主要是非反应性区域。反应坐标的解析表达式为热波动环境中反应如何进行以及为什么进行的机理提供了坚实的基础。

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