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Electronic structure and magnetic properties of Fe3C with 3d and 4d impurities

机译:含3d和4d杂质的Fe3C的电子结构和磁性

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We study the electronic structure, formation energies, and magnetic properties of cementite Fe3C doped by 3d and 4d transition metals (TM) by means of first-principles calculations. All TM elements demonstrate a preference for the substitution of the general iron position in Fe3C. We predict that early elements (Sc, Ti, V, Cr, Zr, and Nb) stabilize the cementite, while the end elements (Ni, Cu, Pd, and Ag) in the TM series sharply destabilize it. The magnetic properties of impurity atoms are found to depend strongly on their atomic numbers and the trends to ferromagnetic or antiferromagnetic coupling of impurities with Fe atoms in Fe3C coincide with the magnetic behavior of these impurities in Fe. The physical reason is a similar location of the Fermi level in the pseudogap of spin-down and almost filled spin-up Fed states in both Fe3C and Fe. (c) 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:我们通过第一性原理计算研究了3d和4d过渡金属(TM)掺杂的渗碳体Fe3C的电子结构,形成能和磁性能。所有TM元素均显示出对Fe3C中一般铁位置的替代的偏好。我们预测,早期元素(Sc,Ti,V,Cr,Zr和Nb)可以稳定渗碳体,而TM系列中的末端元素(Ni,Cu,Pd和Ag)则会使其不稳定。发现杂质原子的磁性能在很大程度上取决于其原子序数,并且Fe3C中杂质与Fe原子的铁磁或反铁磁耦合趋势与Fe中这些杂质的磁行为相吻合。物理原因是Fe3C和Fe中的费米能级在自旋降速和几乎充满的自旋Fed状态的伪间隙中的相似位置。 (c)2007威利海姆威莱赫-维奇出版社有限公司。

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