The Incipient Formation of the Internal Dynamics of a Uniformly Moving Polaron in a Polynucleotide Chain Subjected To a Constant Electric Field

Q3 Mathematics
A. N. Korshunova, V. Lakhno
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引用次数: 1

Abstract

In this paper we consider the incipient formation of the internal dynamics of a uniformly moving polaron in a polynucleotide chain subjected to a constant electric field. The calculations performed show that Bloch oscillations arising in the course of the polaron oscillatory motion along the chain do not completely disappear when the polaron's motion along the chain becomes uniform. When the polaron moves uniformly along the chain, Bloch oscillations are also observed, although in a slightly different form. It is shown that the shape of the electron density distribution in a polaron during its stationary motion in a constant electric field takes an explicit structure. In this case, such characteristics of Bloch oscillations as the period of Bloch oscillations and the maximum Bloch amplitude demonstrate low-density components of the polaron.
恒定电场作用下多核苷酸链中均匀移动极化子内部动力学的初步形成
本文考虑了恒定电场作用下多核苷酸链中均匀运动极化子内部动力学的初始形成。计算结果表明,当极化子沿链的运动趋于均匀时,极化子沿链振荡过程中产生的布洛赫振荡并不完全消失。当极化子沿链均匀移动时,也观察到布洛赫振荡,尽管形式略有不同。结果表明,极化子在恒定电场中静止运动时的电子密度分布具有明确的结构。在这种情况下,布洛赫振荡的周期和最大布洛赫振幅等特征表明极化子的低密度成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mathematical Biology and Bioinformatics
Mathematical Biology and Bioinformatics Mathematics-Applied Mathematics
CiteScore
1.10
自引率
0.00%
发文量
13
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