MAGNETIC FIELD-DEPENDENT ELECTRIC CURRENT ON A PERIODIC POLY(DA)-POLY(DT) DNA MOLECULE STRUCTURE

E. Yudiarsah
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引用次数: 0

Abstract

An electric current flowing on the Poly(dA)-poly(dT) DNA molecule structure has been calculated. The current was calculated from transmission probabilities by employing Landauer-Buttiker formalism. Green’s function technique has been used for obtaining the transmission probabilities. The DNA molecule structure was modeled within the tight-binding Hamiltonian model approach. The model takes into account electron hopping parameters which are dependent on the magnetic field as well as the electric field. The presence of a magnetic field causes the Peierls phase factor on the electron hopping parameters. The calculation results at low electric voltages show that after decreasing, the electric current oscillates with the magnetic field. However, at higher electric voltages, the electric current is increasing and oscillates with the magnetic field.
周期性聚(da)-聚(dt) DNA分子结构上的磁场依赖电流
计算了聚(dA)-聚(dT) DNA分子结构上的电流。采用Landauer-Buttiker形式从传输概率计算电流。采用格林函数技术计算传输概率。DNA分子结构用紧密结合的哈密顿模型方法建模。该模型考虑了依赖于磁场和电场的电子跳变参数。磁场的存在引起电子跳变参数上的佩尔斯相位因子。在低电压下的计算结果表明,电流减小后,随着磁场的变化而振荡。然而,在较高的电压下,电流增加并随磁场振荡。
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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