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Transitions from a Kondo-like diamagnetic insulator into a modulated ferromagnetic metal in FeGa3−yGey

机译:在FeGa3-yGey中从近藤状抗磁绝缘体转变为调制铁磁金属

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摘要

One initial and essential question of magnetism is whether the magnetic properties of a material are governed by localized moments or itinerant electrons. Here, we expose the case for the weakly ferromagnetic system FeGa3−yGey, wherein these two opposite models are reconciled, such that the magnetic susceptibility is quantitatively explained by taking into account the effects of spin–spin correlation. With the electron doping introduced by Ge substitution, the diamagnetic insulating parent compound FeGa3 becomes a paramagnetic metal as early as at y=0.01, and turns into a weakly ferromagnetic metal around the quantum critical point y=0.15. Within the ferromagnetic regime of FeGa3−yGey, the magnetic properties are of a weakly itinerant ferromagnetic nature, located in the intermediate regime between the localized and the itinerant dominance. Our analysis implies a potential universality for all itinerant-electron ferromagnets.
机译:磁性的一个基本的基本问题是材料的磁性是否受局部力矩或流动电子的支配。在这里,我们揭露了弱铁磁系统FeGa3-yGey的情况,其中这两个相反的模型被调和,从而通过考虑自旋-自旋相关性的影响来定量解释磁化率。通过Ge取代引入电子掺杂,抗磁绝缘母体化合物FeGa 3最早在y = 0.01时成为顺磁性金属,并且在量子临界点y = 0.15附近变成弱铁磁性金属。在FeGa3-yGey的铁磁区中,磁特性具有弱的迭代铁磁性质,位于局部和迭代优势之间的中间区。我们的分析表明,所有迭代电子铁磁体都有潜在的普遍性。

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