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首页> 外文期刊>Physical review >Effect of vertex corrections on longitudinal transport through multilayered nanostructures:Dynamical mean-field theory approach applied to the inhomogeneous Falicov-Kimball model
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Effect of vertex corrections on longitudinal transport through multilayered nanostructures:Dynamical mean-field theory approach applied to the inhomogeneous Falicov-Kimball model

机译:顶点校正对通过多层纳米结构的纵向传输的影响:动态均场理论方法应用于非均匀Falicov-Kimball模型

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Inhomogeneous dynamical mean-field theory is employed to calculate the vertex-corrected electronic charge transport for multilayered devices composed of semi-infinite metallic lead layers coupled through a strongly correlated material barrier region. The barrier region can be tuned from a metal to a Mott insulator through adjusting the interaction strength and the particle filling. We use the Falicov-Kimball model to describe the barrier region because an exact expression for the vertex corrections is known, allowing us to determine their effect on transport. The dc conductivity is calculated and we find the effects of the vertex corrections are relatively small, manifesting themselves in a small reduction in the resistance-area product. This reduction saturates in absolute magnitude as the barrier layer becomes thick, as expected due to the vanishing nature of the vertex corrections in bulk. The vertex corrections have a larger relative effect on the resistance-area product for more metallic and thinner devices.
机译:非均质动力学平均场理论用于计算多层器件的经顶点校正的电子电荷传输,该多层器件由通过强相关材料势垒区耦合的半无限金属铅层组成。可以通过调整相互作用强度和粒子填充,将势垒区域从金属调整为Mott绝缘体。我们使用Falicov-Kimball模型来描述障碍区域,因为已知顶点校正的精确表达式,从而可以确定它们对传输的影响。计算了直流电导率,我们发现顶点校正的影响相对较小,表现为电阻面积积的小幅减小。正如预期的那样,由于体层顶点校正的消失性,随着阻挡层变厚,这种减小的绝对量会达到饱和。对于更多金属和更薄的器件,顶点校正对电阻面积乘积具有较大的相对影响。

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