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Models of macromolecular chains based on Classical and Quantum Mechanics: comparison with Gaussian models [Review]

机译:基于经典和量子力学的大分子链模型:与高斯模型的比较[综述]

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摘要

Feature Article: Different approaches to the study of open linear Freely-jointed (unhindered) threedimensional macromolecular chains at thermal equilibrium, based Classical Hamiltonian Dynamics with constraints (namely, a formulation equivalent to Kramers one) or Quantum Mechanics (with stiff harmonic springs), are reviewed and discussed in detail. Results from those approaches are compared to those arising from the standard Gaussian model. Fraenkel's approach, based upon Classical Mechanics (with stiff harmonic springs) and its comparison with the Gaussian model are also treated. It is that the quantum formulation is required in order that the treatment of the high-frequency vibrations be consistent. The role of the uncertainty principle is discussed, on support the quantum-mechanical approach. At a later stage, internal rotations can be treated through Classical Statistical mechanics, under certain conditions. The quantum-Mechanics-based model appears to be consistent with the Gaussian model, while the one based upon constrained Hamiltonian Dynamics yields certain discrepancies with the latter Classical and quantum-mechanical approaches to open linear freely-rotating (hindered) threedimensional macromolecular chains are also treated: the consistency of the quantum-mechanics-based model is displayed by deriving approximately the existence of a persistence length. It is argued that the possible advantages of the quantum-mechanical formulation should be expected not at large scales but at shorter ones. The specific topics to be treated are described in the summary of contents given below. [References: 104]
机译:专题文章:研究具有热平衡的开放线性自由连接(无阻碍)三维大分子链的不同方法,基于经典哈密顿动力学(具有约束条件(相当于克拉默斯公式)或量子力学(具有刚性谐波弹簧),进行了详细的审查和讨论。将这些方法的结果与标准高斯模型的结果进行比较。弗朗克尔(Fraenkel)的方法基于经典力学(带有刚性谐波弹簧),并与高斯模型进行了比较。要求量子公式化以便一致地处理高频振动。讨论了不确定性原理的作用,以支持量子力学方法。在以后的阶段,可以在某些条件下通过古典统计机制来处理内部旋转。基于量子力学的模型似乎与高斯模型一致,而基于受约束的汉密尔顿动力学的模型则与后者的经典和量子力学方法存在一定差异,后者打开线性自由旋转(受阻)三维大分子链的方法也是如此。已处理:通过近似得出持久长度的存在来显示基于量子力学的模型的一致性。有人认为,量子力学公式的可能优势不应在较大范围内预期,而应在较小范围内。在下面给出的内容概述中描述了要处理的特定主题。 [参考:104]

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