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Trivial and non-trivial superconductivity in dsDNA

机译:DSDNA中的琐碎和非琐碎的超导性

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A double-stranded DNA (dsDNA) is modeled by two coupled one-dimensional Kitaev's chain and the topological superconductivity is studied. It is shown that the zero energy mode exists under some specific conditions. The wave function of zero mode is calculated and it is shown that the Majorana quasi-particles exist on the ends of each strand. By calculating the winding number, we show that the topological phase transition can happen if the hopping integral between two strands is very smaller than the pairing potential between the Cooper pairs. It means that the dsDNA behaves as a trivial superconductor, commonly, but single-stranded DNA (or two coupled ssDNA with very small hopping between them) may behave as a non-trivial superconductor. Finally, we suggest an experimental setup for probable detection of Majorana quasi-particle in DNA.
机译:双链DNA(DSDNA)由两个耦合的一维库塔夫的链进行建模,研究了拓扑超导性。 结果表明,在一些特定条件下存在零能量模式。 计算零模式的波函数,并显示出Majorana准粒子存在于每个股线的末端。 通过计算绕组数,我们表明,如果两个股线之间的跳跃积分非常小于组合器对之间的配对电位,则可以发生拓扑相转变。 这意味着DSDNA的表现为普通超导体,通常但单链的DNA(或两者之间的两个耦合的SSDNA,它们之间的两个耦合的SSDNA)可以表现为非级别超导体。 最后,我们建议在DNA中可能检测Majorana准粒子的实验设置。

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