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Base-Pairs’ Correlated Oscillation Effects on the Charge Transfer in Double-Helix B-DNA Molecules

机译:基对相关振荡对双螺旋B-DNA分子电荷转移的相关振荡效应

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摘要

By introducing a suitable renormalization process, the charge carrier and phonon dynamics of a double-stranded helical DNA molecule are expressed in terms of an effective Hamiltonian describing a linear chain, where the renormalized transfer integrals explicitly depend on the relative orientations of the Watson–Crick base pairs, and the renormalized on-site energies are related to the electronic parameters of consecutive base pairs along the helix axis, as well as to the low-frequency phonons’ dispersion relation. The existence of synchronized collective oscillations enhancing the π-π orbital overlapping among different base pairs is disclosed from the study of the obtained analytical dynamical equations. The role of these phonon-correlated, long-range oscillation effects on the charge transfer properties of double-stranded DNA homopolymers is discussed in terms of the resulting band structure.
机译:通过引入合适的重整化过程,双链螺旋DNA分子的电荷载体和声子动力学在描述线性链的有效汉密尔顿时表示,其中重字转移积分明确取决于Watson-Crick的相对取向基对,并且重整化的现场能量与螺旋轴的连续碱基对的电子参数相关,以及低频声子分散关系。从所获得的分析动态方程的研究中公开了增强不同碱基对之间的π-π轨道重叠的同步集体振荡的存在。这些声子相关的远程振荡效应对双链DNA均聚物的电荷转移性能的作用在得到的带结构方面讨论。

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