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Influence of solitons on the conductance properties of double-stranded deoxyribonucleic acid

机译:孤子对双链脱氧核糖核酸电导性质的影响

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A numerical study is presented to investigate the role of solitons in the electronic states of double-stranded DNA (dsDNA) molecule in the metal/DNA/metal system. Based on tight-binding Hamiltonian model and within the framework of a generalized Greena€?s function technique, we consider a ladder model for poly(dG)-poly(dC) DNA molecule containing M cells with four sites (two base pair sites and two backbone sites) in each cell. In the presence of a sublattice of solitons, our results show that the homogeneous soliton distributions induce the electronic states in the band gap of DNA molecule. In addition, the room temperature currenta€“voltage characteristic of the system shows a linear and ohmic-like behaviour.
机译:提出了一个数值研究来研究孤子在金属/ DNA /金属系统中双链DNA(dsDNA)分子的电子态中的作用。基于紧密结合的汉密尔顿模型,并在广义格林函数函数技术的框架内,我们考虑了含有四个位点(两个碱基对位点和两个碱基对)的M细胞的poly(dG)-poly(dC)DNA分子的梯形模型。两个主干站点)。在存在孤子亚晶格的情况下,我们的结果表明,均匀的孤子分布会诱导DNA分子带隙中的电子态。此外,系统的室温电流和电压特性显示出线性和类似欧姆的行为。

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