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半金属铁磁体中具有出人意料小的自旋劈裂的 Heusler 化合物 Co2FeSi。

Half-metallic ferromagnetism with unexpectedly small spin splitting in the Heusler compound Co2FeSi.

机构信息

IFW Dresden, 01171 Dresden, Germany.

出版信息

Phys Rev Lett. 2013 Feb 8;110(6):066601. doi: 10.1103/PhysRevLett.110.066601. Epub 2013 Feb 7.

Abstract

Half-metallic ferromagnetism stands for the technologically sought-after metallicity with 100% spin polarization. Electrical transport should, in principle, sensitively probe half-metallic ferromagnetism, since electron-magnon scattering processes are expected to be absent, with clear-cut consequences for the resistivity and the magnetoresistance. Here we present electrical transport data for single-crystalline Co(2)FeSi, a candidate half-metallic ferromagnet Heusler compound. The data reveal a textbooklike exponential suppression of the electron-magnon scattering rate with decreasing temperature which provides strong evidence that this material indeed possesses perfect spin polarization at low temperature. However, the energy scale for thermally activated spin-flip scattering is relatively low (activation gap Δ≈100 K) which has decisive influence on the magnetoresistance and the anomalous Hall effect, which exhibit strong qualitative changes when crossing T≈100 K.

摘要

半金属铁磁性代表了技术上追求的金属性,具有 100%的自旋极化率。原则上,电输运应该能够灵敏地探测到半金属铁磁性,因为预计电子-磁子散射过程将不存在,这对电阻率和磁电阻有明显的影响。在这里,我们呈现了单晶 Co(2)FeSi 的电输运数据,它是一种候选的半金属铁磁 Heusler 化合物。这些数据揭示了电子-磁子散射率随温度降低呈指数抑制的典型情况,这为该材料在低温下确实具有完美的自旋极化提供了有力证据。然而,热激活自旋翻转散射的能量尺度相对较低(激活能隙 Δ≈100 K),这对半金属铁磁 Heusler 化合物的磁电阻和反常霍尔效应有决定性的影响,当温度越过 T≈100 K 时,这些效应会发生强烈的定性变化。

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