Stripe charge order and its interaction with Majorana bound states in 2M-WS2 topological superconductor

IF 16.3 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES National Science Review Pub Date : 2024-09-05 DOI:10.1093/nsr/nwae312
Xuemin Fan, Xiao-Qi Sun, Penghao Zhu, Yuqiang Fang, Yongkang Ju, Yonghao Yuan, Jingming Yan, Fuqiang Huang, Taylor L Hughes, Peizhe Tang, Qi-Kun Xue, Wei Li
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Abstract

To achieve logic operations via Majorana braiding, positional control of the Majorana bound states (MBSs) must be established. Here we report the observation of a striped surface charge order coexisting with superconductivity and its interaction with the MBS in the topological superconductor 2M-WS2 using low-temperature scanning tunneling microscopy. By applying an out-of-plane magnetic field, we observe that MBS is absent in vortices in the region with stripe order. This is in contrast to adjacent underlaying layers without charge order where vortex-bound MBSs are observed. Via theoretical simulations, we show that the surface stripe order does not destroy the bulk topology, but it can effectively modify the spatial distribution of MBSs, i.e., it pushes them downward away from the 2M-WS2 surface. Our findings demonstrate that the interplay of charge order and topological superconductivity can potentially be used to tune the positions of MBS, and to explore of new states of matter.
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2M-WS2 拓扑超导体中的条纹电荷秩序及其与马约拉纳束缚态的相互作用
要通过马约拉纳编织实现逻辑运算,必须建立对马约拉纳束缚态(MBS)的位置控制。在此,我们报告了利用低温扫描隧道显微镜在拓扑超导体 2M-WS2 中观察到的与超导共存的条状表面电荷阶及其与 MBS 的相互作用。通过施加平面外磁场,我们观察到条纹有序区域的涡流中不存在 MBS。这与相邻的无电荷有序的底层形成鲜明对比,在相邻的底层中可以观察到与涡流结合的 MBS。通过理论模拟,我们发现表面条纹秩不会破坏体拓扑结构,但它能有效地改变 MBS 的空间分布,即把它们向下推离 2M-WS2 表面。我们的研究结果表明,电荷有序性和拓扑超导性的相互作用有可能被用来调整 MBS 的位置,并探索新的物质状态。
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来源期刊
National Science Review
National Science Review MULTIDISCIPLINARY SCIENCES-
CiteScore
24.10
自引率
1.90%
发文量
249
审稿时长
13 weeks
期刊介绍: National Science Review (NSR; ISSN abbreviation: Natl. Sci. Rev.) is an English-language peer-reviewed multidisciplinary open-access scientific journal published by Oxford University Press under the auspices of the Chinese Academy of Sciences.According to Journal Citation Reports, its 2021 impact factor was 23.178. National Science Review publishes both review articles and perspectives as well as original research in the form of brief communications and research articles.
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