NEGATIVE MAGNETORESISTIVITY IN DILUTE ALLOYS

被引:234
作者
BEALMONOD, MT
WEINER, RA
机构
[1] Department of Physics, University of California, San Diego, San Diego, CA
[2] Physique des Solides, Faculté des Sciences, 91, Orsay
来源
PHYSICAL REVIEW | 1968年 / 170卷 / 02期
关键词
D O I
10.1103/PhysRev.170.552
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The negative magnetoresistivity of dilute alloys containing magnetic transition impurities is calculated in the second Born approximation using an s-d exchange model. Physically the variation of the magnetoresistivity is the product of: (a) the field and temperature dependence of the conduction-electron scattering amplitudes, (b) the freezing out of the impurity's spin degree of freedom by the magnetic field. In zero field, the former contribution leads to the well-known Kondo logarithmic series in T, whereas the latter remains constant in temperature. But in the presence of a magnetic field and for gμBHkBT2, the freezing out of the spins, mainly described by the square of the magnetization, varies, and much more rapidly than the perturbation expansion of the scattering amplitudes. This is verified experimentally in CuMn alloys (for TTKondo), and allows us to phenomenologically extend our results to TTKondo, for which we get the same good fit with experiments in CuFe alloys. For gμBHkBT4, the impurity spins are completely aligned with the field; the scattering amplitudes become the main source of variation in the magnetoresistivity. In this case, as in absence of field, an exact theory in needed. © 1968 The American Physical Society.
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页码:552 / +
页数:1
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