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Direct observation of half-metallicity in the Heusler compound Co2MnSi

机译:直接观察Heusler化合物Co 2 MnSi中的半金属性

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摘要

Ferromagnetic thin films of Heusler compounds are highly relevant for spintronic applications owing to their predicted half-metallicity, that is, 100% spin polarization at the Fermi energy. However, experimental evidence for this property is scarce. Here we investigate epitaxial thin films of the compound Co2MnSi in situ by ultraviolet-photoemission spectroscopy, taking advantage of a novel multi-channel spin filter. By this surface sensitive method, an exceptionally large spin polarization of ( ) % at room temperature is observed directly. As a more bulk sensitive method, additional ex situ spin-integrated high energy X-ray photoemission spectroscopy experiments are performed. All experimental results are compared with advanced band structure and photoemission calculations which include surface effects. Excellent agreement is obtained with calculations, which show a highly spin polarized bulk-like surface resonance ingrained in a half metallic bulk band structure.
机译:Heusler化合物的铁磁薄膜由于具有预测的半金属性,即在费米能量下具有100%的自旋极化,因此与自旋电子学应用高度相关。但是,该特性的实验证据很少。在这里,我们利用新型的多通道自旋滤光片,通过紫外光发射光谱法原位研究了化合物Co 2 MnSi的外延薄膜。通过这种表面敏感方法,可以直接观察到室温下()%的异常大的自旋极化。作为对体积更敏感的方法,还执行了其他非原位自旋积分高能X射线光发射光谱实验。所有的实验结果都与先进的能带结构和包括表面效应在内的光发射计算进行了比较。通过计算获得了极好的一致性,这些计算表明,高度自旋极化的块状表面共振根植于半金属块状带结构中。

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