首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >End-to-end distance distribution of force stretched chains reconstruction by maximum-entropy method
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End-to-end distance distribution of force stretched chains reconstruction by maximum-entropy method

机译:最大熵法重构力拉伸链的端到端距离分布

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摘要

Using the maximum-entropy method, the end-to-end distance distribution of the force stretched chain is calculated from the moments of the distribution, which can be obtained from the extension-force curves recorded in single-molecule experiments. If one knows force expansion of the extension through the (n - 1)th power of force, it is enough information to calculate the n moments of the distribution. The method is examined with force stretched chain models, Gaussian chain and excluded-volume chain on two-dimension lattice. The method reconstructs all distributions precisely. The method also is applied to force stretched complex chain molecules: the hairpin and secondary structure conformations. We find that the distributions of homogeneous chains of two conformations are very different: there axe two independent peaks in hairpin distribution; while only one peak is observed in the distribution of secondary structure conformations. Our discussion also shows that the end-to-end distance distribution may discover more critical physical information than the simpler extension-force curves can give.
机译:使用最大熵方法,可以从分布的力矩计算出力张紧链的端到端距离分布,这可以从单分子实验中记录的延伸力曲线中获得。如果通过力的(n-1)次力知道延伸的力膨胀,则足够的信息来计算n个分布力矩。通过力拉伸链模型,二维网格上的高斯链和排除体积链检验了该方法。该方法可以精确地重建所有分布。该方法还适用于强制拉伸复杂的链分子:发夹和二级结构构象。我们发现两个构象的均相链的分布是非常不同的:发夹分布中存在两个独立的峰;而在二级结构构象的分布中仅观察到一个峰。我们的讨论还表明,端到端的距离分布可能会发现比更简单的拉伸力曲线所能提供的更关键的物理信息。

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