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Analysis of Lattice Size, Energy Density and Denaturation for a One-Dimensional DNA Model

机译:一维DNA模型的晶格大小,能量密度和变性分析

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There are several mechanical models to describe the DNA phenomenology. In this work the DNA denaturation is studied under thermodynamical and dynamical point of view using the well known Peyrard-Bishop model. The thermodynamics analysis using the transfer integral operator method is briefly reviewed. In particular, the lattice size is discussed and a conjecture about the minimum energy to denaturation is proposed. In terms of the dynamical aspects of the model, the equations of motion for the system are integrated and the results determine the energy density where the denatura- tion occurs. The behavior of the lattice near the phase transition is analyzed. The relation between the thermodynamical and dynamical results is discussed.
机译:有几种力学模型可以描述DNA现象。在这项工作中,使用众所周知的Peyrard-Bishop模型从热力学和动力学的角度研究了DNA变性。简要回顾了使用传递积分算子方法进行的热力学分析。特别是,讨论了晶格的大小,并提出了关于最小化变性能量的猜想。在模型的动力学方面,系统的运动方程被积分,结果确定了发生变性的能量密度。分析了相变附近晶格的行为。讨论了热力学和动力学结果之间的关系。

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