恒定电场中多核苷酸链上的电荷运动取决于电荷与链位移的耦合常数

A. N. Korshunova, V. Lakhno
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引用次数: 0

摘要

研究了恒定电场中电荷沿链运动的各种规律。这一运动是在Holstein模型的基础上进行模拟的。早期的研究证明了电荷在恒定电场中长距离匀速运动的可能性。在电场强度很小的情况下,荷尔斯泰因极化子可以匀速运动。随着电场强度的增大,电荷运动具有振荡特性,表现为布洛赫振荡。由于电荷的运动取决于整个系统的参数,所以电荷运动的性质不仅取决于电场强度的大小。因此,对于具有不同参数的链,发生均匀运动的电场强度是不同的。考虑了不同电荷与链位移耦合常数值下链中电荷运动和分布的特性。我们发现,随着耦合常数的不同,链中电荷运动状态变化的电场强度值是不同的。我们还证明了在电场强度相同的情况下,在耦合常数不同的链中可以观察到均匀运动或振荡运动,或静止极化子。
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Charge Motion along a Polynucleotide Chains in a Constant Electric Field Depends on the Charge Coupling Constant with Chain Displacements
Various regimes of a charge motion along a chain in a constant electric field are investigated. This motion is simulated on the basis of the Holstein model. Earlier studies demonstrate a possibility of a uniform motion of a charge in a constant electric field over very long distances. For small values of the electric field intensity a Holstein polaron can move at a constant velocity. As the electric field intensity increases, a charge motion acquires oscillatorily character, performing Bloch oscillations. Since the charge motion depends on the whole set of the system parameters the character of the motion depends not only on the value of the electric field intensity. Therefore, the electric field intensity for which the uniform motion takes place differs for chains with different parameters. The character of the charge motion and distribution is considered in chains with different values of the constant of coupling between the charge and the displacements of the chain. We showed that the values of the electric field intensity for which the regime of a charge motion changes are different in chains with different values of the coupling constant. We also demonstrated that for one and the same value of the electric field intensity, in chains with different values of the coupling constant either a uniform motion or an oscillatory motion, or a stationary polaron can be observed.
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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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