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首页> 外文期刊>Physical Review, B. Condensed Matter >Role of Umklapp processes in the conductivity of doped two-leg ladders - art. no. 165433
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Role of Umklapp processes in the conductivity of doped two-leg ladders - art. no. 165433

机译:Umklapp工艺在掺杂的两腿阶梯的导电性中的作用-艺术没有。 165433

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摘要

Recent conductivity measurements performed on the hole-doped two-leg ladder material Sr14-xCaxCu24O41 reveal an approximately linear power law regime in the c-axis dc resistivity as a function of temperature for x=11. In this work, we employ a bosonic model to argue that Umklapp processes are responsible for this feature and for the high spectral weight in the optical conductivity which occurs beyond the finite frequency Drude-like peak. Including quenched disorder in our model allows us to reproduce experimental conductivity and resistivity curves over a wide range of energies. [References: 29]
机译:最近对空穴掺杂的两腿阶梯材料Sr14-xCaxCu24O41进行的电导率测量显示,对于x = 11,c轴dc电阻率随温度变化呈近似线性的幂定律。在这项工作中,我们采用了一个玻色子模型来论证Umklapp过程是造成这一特征的原因,也是造成光导率中频谱高权重的原因,该频谱重超出了有限频率的Drude峰。在我们的模型中包括淬火无序,可以使我们在各种能量范围内重现实验电导率和电阻率曲线。 [参考:29]

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