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Exact results in nonequilibrium statistical mechanics: Formalism and applications in chemical kinetics and single-molecule free energy estimation.

机译:在非平衡统计力学中的精确结果:形式主义及其在化学动力学和单分子自由能估计中的应用。

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In the last two decades or so, a collection of results in nonequilibrium statistical mechanics that departs from the traditional near-equilibrium framework introduced by Lars Onsager in 1931 has been derived, yielding new fundamental insights into far-from-equilibrium processes in general. Apart from offering a more quantitative statement of the second law of thermodynamics, some of these results---typified by the so-called "Jarzynski equality"---have also offered novel means of estimating equilibrium quantities from nonequilibrium processes, such as free energy differences from single-molecule "pulling" experiments. This thesis contributes to such efforts by offering three novel results in nonequilibrium statistical mechanics: (a) The entropic analog of the Jarzynski equality; (b) A methodology for estimating free energies from "clamp-and-release" nonequilibrium processes; and (c) A directly measurable symmetry relation in chemical kinetics similar to (but more general than) chemical detailed balance. These results share in common the feature of remaining valid outside Onsager's near-equilibrium regime, and bear direct applicability in protein folding kinetics as well as in single-molecule free energy estimation.
机译:在过去的二十年左右的时间里,已经获得了一系列非均衡统计机制的结果,这些结果与1931年拉尔斯·昂萨格(Lars Onsager)提出的传统近均衡框架有所不同,从而对远非均衡过程产生了新的基本见解。除了提供更定量的热力学第二定律陈述外,其中一些结果(以所谓的“ Jarzynski等式”为代表)还提供了从非平衡过程估算平衡量的新颖方法,例如自由单分子“拉”实验的能量差。本论文通过在非平衡统计力学中提供三个新颖的结果,为这种努力做出了贡献:(a)Jarzynski等式的熵类似物; (b)估算“钳放”非平衡过程中自由能的方法; (c)化学动力学中可直接测量的对称关系,类似于(但比化学详细平衡更普遍)。这些结果具有共同的特征,即在Onsager的接近平衡机制之外仍然有效,并且在蛋白质折叠动力学以及单分子自由能估算中具有直接的适用性。

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