EFFECTIVE-FIELD DISTRIBUTIONS AND RESISTIVITY MINIMA IN AMORPHOUS FERROMAGNETS

被引:117
作者
GREST, GS
NAGEL, SR
机构
[1] UNIV CHICAGO,JAMES FRANCK INST,CHICAGO,IL 60637
[2] UNIV CHICAGO,DEPT PHYS,CHICAGO,IL 60637
来源
PHYSICAL REVIEW B | 1979年 / 19卷 / 07期
关键词
D O I
10.1103/PhysRevB.19.3571
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We show that the anomalous low-temperature resistivity minima that have been observed in practically all amorphous metals can be explained by a modified Kondo mechanism as suggested by Tsuei. If some spins exist in zero field, even in a ferromagnet, they will give rise to a Kondo minimum in the resistivity. We have performed a Monte Carlo calculation of the effective fields that are present at each ion in a strong ferromagnet such as Fe0.8 B0.2, using measured radial distribution functions (RDF's). Including both direct-exchange and Ruderman-Kittel-Kasuya-Yosida (RKKY) interactions, we find no spins which are in zero field. However, if we include superexchange interactions between those next-nearest-neighbor magnetic atoms which are separated by a metalloid atom, there is a long tail in the distributions of fields which goes through zero and is nonzero at relatively large negative fields. This distribution can explain why the resistivity is unaltered in applied magnetic fields of up to 50 kOe. It can also explain why the resistivity minimum can shift to much higher temperatures upon the addition of a second type of magnetic element. © 1979 The American Physical Society.
引用
收藏
页码:3571 / 3579
页数:9
相关论文
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