论文标题

Fe(TE,SE)/BI2TE3界面处的单层超导性和可调拓扑电子结构

Monolayer superconductivity and tunable topological electronic structure at the Fe(Te,Se)/Bi2Te3 interface

论文作者

Moore, Robert G., Smith, Tyler, Yao, Xiong, Pai, Yun-Yi, Chilcote, Michael, Miao, Hu, Okamoto, Satoshi, Oh, Seongshik, Brahlek, Matthew

论文摘要

二维拓扑迪拉克状态与S波超导体之间的界面有望支持可用于量子计算应用的Majorana结合状态。意识到这些新颖的物质及其应用,需要控制超导性和自旋轨道耦合,以实现同时在超级导入的同时旋转巨型锁定的拓扑表面状态。虽然在散装FETE0.55SE0.45的磁性涡流核心中观察到了主要结合状态的特征,但掺杂的不均匀性和混乱使这些特征不清楚,涡旋之间不一致。在这里,我们报告了通过分子束外延在BI2TE3上生长的单层fete1-ysey(Fe(te,se))中的超导性。旋转和角度分辨的光发射光谱直接解决了Fe(TE,SE)/BI2TE3异质结构的界面自旋和电子结构。我们发现,对于y = 0.25,fe(te,se)电子结构与拓扑bi2te3界面状态重叠,这破坏了所需的旋转摩托明锁定。相反,对于y = 0.1,较小的fe(te,se)费米表面允许在拓扑状态下观察到清晰的自旋摩托锁定。因此,我们演示了FE(TE,SE)/BI2TE3系统是一个高度可调的平台,用于实现Majorana绑定状态,其中减少的掺杂可以改善对Majorana询问和潜在应用重要的特征。

The interface between two-dimensional topological Dirac states and an s-wave superconductor is expected to support Majorana bound states that can be used for quantum computing applications. Realizing these novel states of matter and their applications requires control over superconductivity and spin-orbit coupling to achieve spin-momentum locked topological surface states which are simultaneously superconducting. While signatures of Majorana bound states have been observed in the magnetic vortex cores of bulk FeTe0.55Se0.45, inhomogeneity and disorder from doping makes these signatures unclear and inconsistent between vortices. Here we report superconductivity in monolayer FeTe1-ySey (Fe(Te,Se)) grown on Bi2Te3 by molecular beam epitaxy. Spin and angle resolved photoemission spectroscopy directly resolve the interfacial spin and electronic structure of Fe(Te,Se)/Bi2Te3 heterostructures. We find that for y = 0.25 the Fe(Te,Se) electronic structure overlaps with the topological Bi2Te3 interfacial states which disrupts the desired spin-momentum locking. In contrast, for y = 0.1 a smaller Fe(Te,Se) Fermi surface allows for clear spin-momentum locking observed in the topological states. Hence, we demonstrate the Fe(Te,Se)/Bi2Te3 system is a highly tunable platform for realizing Majorana bound states where reduced doping can improve characteristics important for Majorana interrogation and potential applications.

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