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首页> 外文期刊>Physical Review, B. Condensed Matter >Depleted Kondo lattices: Quantum Monte Carlo and mean-field calculations - art. no. 115104
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Depleted Kondo lattices: Quantum Monte Carlo and mean-field calculations - art. no. 115104

机译:枯竭的近藤晶格:蒙特卡罗量子和均场计算-艺术。没有。 115104

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摘要

We consider a two-dimensional Kondo lattice model with exchange J and hopping t in which three out of four impurity spins are removed in a regular way. At the particle-hole symmetric point the model may be studied with auxiliary field quantum Monte Carlo (QMC) methods without sign problems. To achieve the relevant energy scales on finite clusters, we introduce a simple method to reduce size effects by up to an order of magnitude in temperature. In this model, a metallic phase survives up to arbitrarily low temperatures before being disrupted by magnetic fluctuations which open a gap in the charge sector. We study the formation of the heavy-electron state with emphasis on a crossover scale T* defined by the maximum in the resistivity versus temperature curve. The behavior of thermodynamic properties such as specific heat as well as spin and charge uniform susceptibilities are studied as the temperature varies in a wide range across T*. Within our accuracy T* compares well to the Kondo scale of the related single impurity problem. Finally our QMC results are compared with mean-field approximations. [References: 23]
机译:我们考虑具有交换J和跳跃t的二维Kondo晶格模型,其中以常规方式去除了四个杂质自旋中的三个。在粒子孔对称点,可以使用辅助场量子蒙特卡罗(QMC)方法研究模型,而不会出现符号问题。为了在有限的簇上实现相关的能量尺度,我们引入了一种简单的方法来将尺寸效应减小一个温度量级。在此模型中,金属相可以在任意低温下生存,然后被磁性波动所破坏,从而在电荷扇区中形成缺口。我们研究重电子态的形成,重点是由电阻率与温度关系曲线中的最大值定义的交叉标度T *。随着温度在T *的宽范围内变化,研究了热力学特性(如比热以及自旋和电荷均匀磁化率)的行为。在我们的精度范围内,T *与相关的单个杂质问题的近藤标度比较好。最后,将我们的QMC结果与平均场近似值进行比较。 [参考:23]

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