Resistivity of noble-metal-transition-metal spin glasses

A. Sheikh
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引用次数: 2

Abstract

Following the existence of a 'hole' in the local field distribution P(H), the authors have divided the spin system of a spin glass into two groups: those lying at the lower bounds of P(H) are 'effective free' spins and the rest are interacting spins. New expressions for 'effective free' spin populations and interacting spin populations are incorporated into a modified Kondo theory and a spin-diffusion theory respectively. They have thereby obtained a model for magnetic resistivity. The authors analysed experimental data on AgMn, AuMn and CuMn spin glasses, using this model for best fitting of the data. The model gives a satisfactory description of the experimental behaviour for all these alloys. A new resistivity maximum is observed in the interacting spin resistivity at a temperature TSG, close to Tf, the temperature for the AC susceptibility cusp. The temperature Tm, of the resistivity maximum depends on impurity spin S, and it is related to the lower bounds Hc, of P(H).
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贵金属-过渡金属自旋玻璃的电阻率
根据局部场分布P(H)中存在一个“空穴”,作者将自旋玻璃的自旋系统分为两组:位于P(H)下界的自旋为“有效自由”自旋,其余为相互作用自旋。“有效自由”自旋居群和相互作用自旋居群的新表达式分别被纳入改进的近藤理论和自旋扩散理论。他们由此得到了一个磁电阻率模型。作者分析了AgMn、AuMn和CuMn自旋玻璃的实验数据,使用该模型对数据进行了最佳拟合。该模型对所有这些合金的实验行为都给出了令人满意的描述。在TSG温度下,相互作用的自旋电阻率出现了一个新的最大值。电阻率最大值的温度Tm取决于杂质自旋S,并与P(H)的下界Hc有关。
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