论文标题

Fe $ _ {1+y}上的磁性,超导和拓扑表面状态

Magnetic, superconducting, and topological surface states on Fe$_{1+y}$Te$_{1-x}$Se$_{x}$

论文作者

Li, Yangmu, Zaki, Nader, Garlea, Vasile O., Savici, Andrei T., Fobes, David, Xu, Zhijun, Camino, Fernando, Petrovic, Cedomir, Gu, Genda, Johnson, Peter D., Tranquada, John M., Zaliznyak, Igor A.

论文摘要

在最近的拓扑表面超导性和Majorana零模式(MZMS)的报告中,使用非阿布尔统计来实现无误量子计算的想法引发了兴趣。一个相关的难题是,在样品表面上未均匀观察到拓扑特征和超导性能。对这些电子不均匀性的理解和实际控制对潜在应用提出了巨大的挑战。在这里,我们结合了中子散射,扫描角度分辨光发射光谱(ARPES)以及微探针组成和电阻率测量,以表征Fe $ _ {1+y} $ te $ _ {1-x} $ _ {1-x} $ se $ se $ _ {x $ _ {x} $的电子状态。我们建立了一个相图,其中仅在足够低的Fe浓度下观察到超导性,与不同的抗磁磁相关相关,而共存的拓扑表面状态仅在足够高的TE浓度下发生。我们发现Fete $ _ {0.55} $ SE $ _ {0.45} $位于两个相边界非常接近,这解释了超导和拓扑状态的不均匀性。我们的结果表明,在实际应用中使用拓扑MZM所需的组成控制。

The idea of employing non-Abelian statistics for error-free quantum computing ignited interest in recent reports of topological surface superconductivity and Majorana zero modes (MZMs) in FeTe$_{0.55}$Se$_{0.45}$. An associated puzzle is that the topological features and superconducting properties are not observed uniformly across the sample surface. Understanding and practical control of these electronic inhomogeneities present a prominent challenge for potential applications. Here, we combine neutron scattering, scanning angle-resolved photoemission spectroscopy (ARPES), and microprobe composition and resistivity measurements to characterize the electronic state of Fe$_{1+y}$Te$_{1-x}$Se$_{x}$. We establish a phase diagram in which the superconductivity is observed only at sufficiently low Fe concentration, in association with distinct antiferromagnetic correlations, while the coexisting topological surface state occurs only at sufficiently high Te concentration. We find that FeTe$_{0.55}$Se$_{0.45}$ is located very close to both phase boundaries, which explains the inhomogeneity of superconducting and topological states. Our results demonstrate the compositional control required for use of topological MZMs in practical applications.

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