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The magnetic moments and their long-range ordering for Fe atoms in a wide variety of metallic environments

机译:多种金属环境中Fe原子的磁矩及其远距离有序

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The magnitudes of Fe magnetic moments, together with their long-range ordering when appropriate, are compared and contrasted in a variety of metallic environments. Thus, Fe, in its stable body-centered-cubic (bcc) phase under ambient conditions, is considered under pressures p, which can yield different crystal structures at high p, including fcc. The modification of the ferromagnetism in bcc Fe is surveyed as one passes through a bc-tetragonal lattice to the fcc form. In the latter, evidence is presented, both from theory and experiment, that the ordering is antiferromagnetic in character. Then, binary metallic alloys with Fe atoms as the majority component are considered, Fe-Co and Fe-Ga being focal points in both ordered and disordered materials. Finally, some discussion is given, involving again both experiment and theory, of the possible spin polarization of neighboring Cs atoms when Fe impurity atoms are inserted into the low conduction electron density characterizing this heavy alkali metal under ambient conditions.
机译:在各种金属环境中,比较和对比了Fe磁矩的大小以及适当时的远距离排序。因此,认为Fe在环境条件下处于稳定的体心立方(bcc)相,处于压力p下,在高p压力下会产生不同的晶体结构,包括fcc。当人们通过bc-四方晶格形成fcc形式时,对bcc Fe中铁磁性的变化进行了研究。在后者中,从理论和实验两个方面都提供了证据,证明该排序具有反铁磁特性。然后,考虑以Fe原子为主要成分的二元金属合金,Fe-Co和Fe-Ga是有序和无序材料中的焦点。最后,再次进行了涉及实验和理论的讨论,讨论了在环境条件下,将Fe杂质原子插入表征该重碱金属的低传导电子密度时,相邻Cs原子可能发生的自旋极化。

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