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首页> 外文期刊>Physical review, B >Dependence of transport coefficients of Yb(Rh1-xCox)(2)Si-2 intermetallics on temperature and cobalt concentration
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Dependence of transport coefficients of Yb(Rh1-xCox)(2)Si-2 intermetallics on temperature and cobalt concentration

机译:Yb(RH1-Xcox)(2)Si-2金属间质量对温度和钴浓度的依赖性

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摘要

Dependence of transport coefficients of the Yb(Rh1-xCox)(2)Si-2 series of alloys on temperature and cobalt concentration is explained by an asymmetric Anderson model which takes into account the exchange scattering of conduction electrons on ytterbium ions and the splitting of 4f states by the crystalline electric field (CEF). The substitution of rhodium by cobalt is described as an increase of chemical pressure which reduces the exchange coupling and the CEF splitting. The scaling analysis and numerical NCA solution of the model show that the effective degeneracy of the 4f state at a given temperature depends on the relative magnitude of the Kondo scale and the CEF splitting. Thus, we find that dependence of the thermopower, S(T), on temperature and cobalt concentration can be understood as an interplay of quantum fluctuations, driven by the Kondo effect, and thermal fluctuations, which favor a uniform occupation of the CEF states. The theoretical model captures all the qualitative features of the experimental data and it explains the evolution of the shape of S(T) with the increase of cobalt concentration.
机译:通过不对称的Anderson模型解释了Yb(RH1-Xcox)(2)Si-2系列合金对温度和钴浓度的依赖性的依赖性,该模型考虑了YTterbium离子的传导电子的交换散射和分裂4F由晶体电场(CEF)的态。通过钴替代铑的取代作为减少交换耦合和CEF分裂的化学压力的增加。该模型的缩放分析和数值NCA解决方案表明,在给定温度下的4F状态的有效退化取决于Kondo尺度和CEF分裂的相对幅度。因此,我们发现热电机,S(t),温度和钴浓度的依赖可以被理解为由kondo效应驱动的量子波动的相互作用,以及热波动,这有利于统一占据CEF状态。理论模型捕获了实验数据的所有定性特征,并且它以钴浓度的增加解释了S(t)形状的演变。

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