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Engineering topological superconductors using surface atomic-layer/molecule hybrid materials

机译:使用表面原子层/分子混合材料的工程拓扑超导体

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摘要

Surface atomic-layer (SAL) superconductors consisting of epitaxially grown metal adatoms on a clean semiconductor surface have been recently established. Compared to conventional metal thin films, they have two important features: (i) space-inversion symmetry-breaking throughout the system and (ii) high sensitivity to surface adsorption of foreign species. These potentially lead to manifestation of the Rashba effect and a Zeeman field exerted by adsorbed magnetic organic molecules. After introduction of the archetypical SAL superconductor Si(111)-(root 7 x root 3)-In, we describe how these features are utilized to engineer a topological superconductor with Majorana fermions and discuss its promises and expected challenges.
机译:最近已经建立了由在清洁的半导体表面上外延生长的金属原子构成的表面原子层(SAL)超导体。与常规金属薄膜相比,它们具有两个重要特征:(i)整个系统的空间反转对称性破坏;(ii)对异物表面吸附的高度敏感性。这些可能导致Rashba效应和吸附的磁性有机分子施加的Zeeman场的表现。在介绍了典型的SAL超导体Si(111)-(根7 x根3)-In之后,我们描述了如何利用这些功能来设计具有马里亚纳费米子的拓扑超导体,并讨论了其前景和预期挑战。

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