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Identification of simple reaction coordinates from complex dynamics

机译:复杂动态的简单反应坐标的识别

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摘要

Reaction coordinates are widely used throughout chemical physics to model and understand complex chemical transformations. We introduce a definition of the natural reaction coordinate, suitable for condensed phase and biomolecular systems, as a maximally predictive one-dimensional projection. We then show that this criterion is uniquely satisfied by a dominant eigenfunction of an integral operator associated with the ensemble dynamics. We present a new sparse estimator for these eigenfunctions which can search through a large candidate pool of structural order parameters and build simple, interpretable approximations that employ only a small number of these order parameters. Example applications with a small molecule's rotational dynamics and simulations of protein conformational change and folding show that this approach can filter through statistical noise to identify simple reaction coordinates from complex dynamics. Published by AIP Publishing.
机译:反应坐标在整个化学物理学中广泛应用于模型和理解复杂的化学转化。 我们介绍了天然反应坐标的定义,适用于冷凝相和生物分子系统,作为最大预测的一维投影。 然后,我们表明,该标准由与集合动态相关联的积分操作者的主导特征函数唯一满足。 我们为这些特征功能提出了一个新的稀疏估计,可以通过大型候选池的结构顺序参数搜索并构建仅使用少量这些订单参数的简单,可解释的近似。 具有小分子旋转动力学和蛋白质构象变化和折叠模拟的示例应用表明,这种方法可以通过统计噪声过滤,以识别复杂动态的简单反应坐标。 通过AIP发布发布。

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