论文标题

手性分子中拓扑非平地和微不足道的零模式

Topologically nontrivial and trivial zero modes in chiral molecules

论文作者

Chen, Xiao-Feng, Luo, Wenchen, Fang, Tie-Feng, Paltiel, Yossi, Millo, Oded, Guo, Ai-Min, Sun, Qing-Feng

论文摘要

最近,沿手性分子的电子传输引起了广泛的兴趣,并且在最近的实验中已经报道了几种有趣的现象,例如,在超导膜上吸附单螺旋蛋白的零偏置电导峰值。在这里,我们从理论上研究了电子传输,该电子传输在垂直磁场的存在下,夹在超导电极和正常金属之间的两端单螺旋蛋白。随着接近性诱导的超导性与超导介质的距离减弱,沿单螺旋蛋白的螺旋轴的配对电位预计将呈指数降低,这是由衰减指数$λ$的特征,并且与实验相关。我们的结果表明,(i)零偏置电导峰为$ 2E^2/h $在零温度下出现,峰高(宽度)随温度升高而降低(宽度)降低(宽度),并且(ii)这个零偏置峰可以分为两个峰,与实验一致[参见,例如,参见,例如,Nano Lett。 19,5167(2019)]。值得注意的是,在这种蛋白质 - 渗透导体设置中观察到Majorana零模式,在广泛的模型参数中,如$ Z_2 $拓扑不变性和MajoroAna振荡所示。有趣的是,特定区域被证明用于衰减的超导性,在拓扑上,无平凡和微不足道的零模式共存,带隙保持恒定。随着配对势的增加,拓扑非平凡的零模式将转变为琐碎的模式,而无需任何带隙闭合 - 重新封闭,并且相变的关键配对潜力会以$λ$指数降低。另外,两个零模式之一可以连续从蛋白质的一端转移到正常金属电极接触的另一端。

Recently, electron transport along chiral molecules has been attracting extensive interest and several intriguing phenomena have been reported in recent experiments, such as the emergence of zero-bias conductance peaks upon the adsorption of single-helical protein on superconducting films. Here, we study theoretically the electron transport through a two-terminal single-helical protein sandwiched between a superconducting electrode and a normal-metal one in the presence of a perpendicular magnetic field. As the proximity-induced superconductivity attenuates with the distance from superconducting media, the pairing potential along the helix axis of the single-helical protein is expected to decrease exponentially, which is characterized by the decay exponent $λ$ and closely related to the experiments. Our results indicate that (i) a zero-bias conductance peak of $2e^2/h$ appears at zero temperature and the peak height (width) decreases (broadens) with increasing temperature, and (ii) this zero-bias peak can split into two peaks, which are in agreement with the experiments [see, e.g., Nano Lett. 19, 5167 (2019)]. Remarkably, Majorana zero modes are observed in this protein-superconductor setup in a wide range of model parameters, as manifested by the $Z_2$ topological invariant and the Majoroana oscillation. Interestingly, a specific region is demonstrated for decaying superconductivity, where topologically nontrivial and trivial zero modes coexist and the bandgap remains constant. With increasing the pairing potential, the topologically nontrivial zero modes will transform to the trivial ones without any bandgap closing-reopening, and the critical pairing potential of the phase transition attenuates exponentially with $λ$. Additionally, one of the two zero modes can be continuously shifted from one end of the protein toward the other end contacted by the normal-metal electrode.

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