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Exploring a Proximity-Coupled Co Chain on Pb(110)as a Possible Majorana Platform

机译:探索Pb(110)上的邻近耦合Co链作为可能的Majorana平台

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摘要

Linear chains of magnetic atoms proximity coupled to an s-wave superconductor are predicted to host Majorana zero modes at the chain ends in the presence of strong spin–orbit coupling. Specifically, iron (Fe) chains on Pb(110) have been explored as a possible system to exhibit topological superconductivity and host Majorana zero modes [Nadj-Perge S. et al., Science 2014, 346, 602−607 [] []]. Here, we study chains of the transition metal cobalt (Co) on Pb(110) and check for topological signatures. Using spin-polarized scanning tunneling spectroscopy, we resolve ferromagnetic order in the d bands of the chains. Interestingly, also the subgap Yu–Shiba–Rusinov (YSR) bands carry a spin polarization as was predicted decades ago. Superconducting tips allow us to resolve further details of the YSR bands and in particular resonances at zero energy. We map the spatial distribution of the zero-energy signal and find it delocalized along the chain. Hence, despite the ferromagnetic coupling within the chains and the strong spin-orbit coupling in the superconductor, we do not find clear evidence of Majorana modes. Simpletight-binding calculations suggest that the spin–orbit–splitbands may cross the Fermi level four times which suppresses the zero-energymodes.
机译:预计存在强自旋轨道耦合的情况下,与s波超导体耦合的磁性原子线性邻近链将在链端具有马约拉那零模。具体而言,已经研究了Pb(110)上的铁(Fe)链作为可能的系统,该系统表现出拓扑超导性并具有Majorana零模式[Nadj-Perge S.等人,Science 2014,346,602−607 [] [] ]。在这里,我们研究Pb(110)上过渡金属钴(Co)的链并检查拓扑特征。使用自旋极化扫描隧道光谱法,我们解析了链的d波段中的铁磁顺序。有趣的是,亚间隙的Yu–Shiba–Rusinov(YSR)波段也带有自旋极化,正如几十年前所预测的那样。超导技巧使我们能够解析YSR波段的更多细节,尤其是零能量谐振。我们绘制了零能量信号的空间分布图,发现它沿着链是非定域的。因此,尽管链中存在铁磁耦合并且超导体中存在强自旋轨道耦合,但我们没有找到马约拉那模式的明确证据。简单紧束缚计算表明自旋-轨道分裂带可能会穿过费米能级四次,从而抑制了零能量模式。

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