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首页> 外文期刊>The Journal of Chemical Physics >A DYNAMIC MONTE CARLO ALGORITHM FOR EXPLORATION OF DENSE CONFORMATIONAL SPACES IN HETEROPOLYMERS
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A DYNAMIC MONTE CARLO ALGORITHM FOR EXPLORATION OF DENSE CONFORMATIONAL SPACES IN HETEROPOLYMERS

机译:动态蒙特卡罗算法研究杂多聚合物的密度构象空间。

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This paper concerns configurational sampling methods for dense single chains for use in the study of low energy states of heteropolymers. The efficiency of current sampling techniques decreases with increasing density and breaks down completely when the volume fraction of the solvent approaches zero. Methods proposed for dense multichain systems are also ineffective for single chain conformational sampling. We propose a new elementary Monte Carlo move for dense single chains which generates new configurations by breaking and patching the chain. The effectiveness of this method is studied by testing its ability to identify global energy minima for maximally compact lattice chains. The algorithm is able to determine the ground state for a HP model protein of length 48 in around 37 000 steps. Computational results are presented for compact lattice chains of length up to 1000 on a 10x10x10 cubic lattice. (C) 1997 American Institute of Physics. [References: 25]
机译:本文涉及用于研究杂聚物的低能态的致密单链的构型采样方法。当前采样技术的效率随着密度的增加而降低,并在溶剂的体积分数接近零时完全崩溃。针对密集多链系统提出的方法对于单链构象采样也无效。我们为密集的单链提出了一种新的基本蒙特卡洛运动,该运动通过打断和打补丁链来产生新的配置。通过测试其识别最大紧凑晶格链的全局能量最小值的能力,研究了该方法的有效性。该算法能够以大约37 000个步长确定长度为48的HP模型蛋白的基态。给出了在10x10x10立方晶格上长度最大为1000的紧凑晶格链的计算结果。 (C)1997美国物理研究所。 [参考:25]

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