论文标题

单层石墨烯在外延薄膜上

Single-layer graphene on epitaxial FeRh thin films

论文作者

Uhlíř, Vojtěch, Pressacco, Federico, Arregi, Jon Ander, Procházka, Pavel, Průša, Stanislav, Potoček, Michal, Šikola, Tomáš, Čechal, Jan, Bendounan, Azzedine, Sirotti, Fausto

论文摘要

石墨烯是一种2D材料,在许多领域都具有前瞻性应用,显示出出色的电子传输性能。例如,通过磁性材料的接近度诱导和控制石墨烯层中的磁性,可以使其在自旋设备中的利用。本文介绍了在外部小家伙薄膜表面形成的单层石墨烯的制造和详细表征。 FERH表面的磁态可以通过互连阶参数引起的温度,磁场或应变来控制。通过X射线光发射和X射线吸收光谱,低能离子散射,扫描隧道显微镜以及低能电子显微镜表征石墨烯层​​的表征表明,石墨烯是单层,多晶剂,覆盖了超过97%的siststrate,覆盖了97%以上。对于Ferh基板单位向量,石墨烯在FERH(001)表面上显示了几个优先取向(001)表面,其单位向量旋转了30°,15°,11°和19°。此外,石墨烯层能够在暴露于空气中几个月时保护膜免受氧化的影响。因此,在制造磁元素或原子较薄的间隔物期间,它也可以用作保护层,该垫片可以在高级设备中将可切换磁层掺入2D材料的堆栈中。

Graphene is a 2D material that displays excellent electronic transport properties with prospective applications in many fields. Inducing and controlling magnetism in the graphene layer, for instance by proximity of magnetic materials, may enable its utilization in spintronic devices. This paper presents fabrication and detailed characterization of single-layer graphene formed on the surface of epitaxial FeRh thin films. The magnetic state of the FeRh surface can be controlled by temperature, magnetic field or strain due to interconnected order parameters. Characterization of graphene layers by X-ray Photoemission and X-ray Absorption Spectroscopy, Low-Energy Ion Scattering, Scanning Tunneling Microscopy, and Low-Energy Electron Microscopy shows that graphene is single-layer, polycrystalline and covers more than 97% of the substrate. Graphene displays several preferential orientations on the FeRh(001) surface with unit vectors of graphene rotated by 30°, 15°, 11°, and 19° with respect to FeRh substrate unit vectors. In addition, the graphene layer is capable to protect the films from oxidation when exposed to air for several months. Therefore, it can be also used as a protective layer during fabrication of magnetic elements or as an atomically thin spacer, which enables incorporation of switchable magnetic layers within stacks of 2D materials in advanced devices.

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