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Electric-field-dependent variable-range hopping conduction in PrBa2Cu3O7-y

机译:PrBa2Cu3O7-y中与电场有关的变程跳跃传导

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The variable-range hopping conductivities of quasi-two-dimensional systems in electric fields were calculated for the cases of both constant and energy-dependent densities of states. The localized states were considered to be randomly distributed in space and energy coordinates, and the carriers were considered to be distributed according to the Fermi distribution. Approximations yielded analytic results valid for most temperatures and electric fields and included localized states both above and below the Fermi level. We hypothesized that the localized states of PrBa2Cu3O7-y (PBCO) are distributed in the CuO planes, making that compound behave as a quasi-two-dimensional material. We compared our theory with experiments of PBCO-based junctions and found good agreement between theory and experiment.
机译:在恒定和能量相关的状态密度的情况下,计算了准二维系统在电场中的变程跳跃电导率。认为局部状态在空间和能量坐标中是随机分布的,并且根据费米分布,认为载流子是分布的。近似值得出的分析结果适用于大多数温度和电场,并且包括费米能级以上和以下的局部状态。我们假设PrBa2Cu3O7-y(PBCO)的局部状态分布在CuO平面中,从而使该化合物表现为准二维材料。我们将我们的理论与基于PBCO的结点的实验进行了比较,发现理论与实验之间有很好的一致性。

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