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A new half-metallic ferromagnet K2Cr8O16 predicted by an ab-initio electronic structure calculation

机译:通过从头算电子结构计算预测出一种新型的半金属铁磁体K2Cr8O16

摘要

The first-principles electronic structure calculation is carried out to predict that a chromium oxide K2Cr8O16 with the hollandite-type crystal structure should be a new half-metallic ferromagnet. We compare our results with recent experimental data which indicate the ferromagnetic-metal to ferromagnetic-insulator transition at T ∼ 90 K, as well as the paramagnetic-metal to ferromagnetic-metal transition at T ∼ 180 K. Based on the calculated electronic structures, we argue that the double-exchange mechanism is responsible for the observed saturated ferromagnetism and the formation of the incommensurate, long-wavelength density wave of spinless fermions caused by the Fermi-surface nesting may be the origin of the opening of the charge gap.
机译:进行第一性原理电子结构计算,以预测具有钙铁矿型晶体结构的氧化铬K2Cr8O16应该是新型的半金属铁磁体。我们将我们的结果与最新的实验数据进行比较,这些数据表明在T〜90 K时铁磁性金属到铁磁绝缘体的转变,以及在T〜180 K时顺磁性金属到铁磁金属的转变。基于计算的电子结构,我们认为,双交换机制是造成观察到的饱和铁磁性的原因,费米表面嵌套引起的无旋费米子的不相称的长波密度波的形成可能是电荷隙开放的起源。

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