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On the disordered SAW model for DNA denaturation

机译:关于DNA变性的无序声表面波模型

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摘要

We investigate numerically the transition properties for models of DNA denaturation, which can be relevant for certain classes of disordered systems. The investigation follows two, complementary, numerical approaches: on- lattice Monte Carlo like simulations of off-lattice statistical mechanics calculations, which can extend very significantly the affordable lengths for the sequences. The on-lattice model consists of two interacting self-avoiding walks with the same origin on a three-dimensional cubic lattice. We introduce two different contact energies, for the adenine-thymine coupling and the guanine-cytosine one, respectively, distributed according to a bimodal law. Whereas the transition is recognized to be of first order in the pure (homopolymer) case, the behaviour of quantities averaged over disorder suggests that the random system undergoes a second-order transition.
机译:我们从数字上研究了DNA变性模型的过渡特性,这对于某些类别的无序系统可能是相关的。该研究遵循两种互补的数值方法:格子蒙特卡洛模拟法,用于非晶格统计力学计算,可以极大地扩展序列的可承受长度。晶格模型由两个相互交互的,在三维立方晶格上具有相同起点的自动回避步道组成。我们引入了两种不同的接触能,分别用于腺嘌呤-胸腺嘧啶偶联和鸟嘌呤-胞嘧啶偶联,根据双峰定律分布。尽管在纯(均聚物)情况下过渡被认为是一阶的,但对无序量进行平均的行为表明,随机系统经历了二阶过渡。

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