首页> 外文期刊>The European physical journal, B. Condensed matter physics >Microscopic Bardeen-Cooper-Schrieffer formulation of the critical temperature of multilayer copper-oxide superconductors
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Microscopic Bardeen-Cooper-Schrieffer formulation of the critical temperature of multilayer copper-oxide superconductors

机译:多层氧化铜超导体临界温度的微观Bardeen-Cooper-Schrieffer公式

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摘要

We study superconductivity in multilayer copper oxides, in the frame of a realistic microscopic formulation. Solving the full temperature dependent BCS gap equations, we obtain a maximum in the transition temperature Tc for M = 3 or 4 CuO2 layers in the unit cell for appropriate values of the interlayer tunneling (negative pair tunneling), and via the consideration of the doping imbalance between the inner and outer layers. This is the ubiquitous experimental result for Ca intercalated copper oxides, as opposed to other intercalating elements. Further, using a restricted set of parameters, we obtain an exact fit of Tc(M = 1-4) for five different Ca intercalated homologuous copper oxide families.
机译:我们在现实的微观配方框架内研究多层氧化铜中的超导性。求解与温度相关的全BCS间隙方程,对于层间隧穿(负对隧穿)的适当值,我们获得了晶胞中M = 3或4个CuO2层的转变温度Tc的最大值,并考虑了掺杂内层和外层之间的不平衡。与其他插层元素相反,这是Ca插层氧化铜的普遍实验结果。此外,使用一组受限的参数,我们获得了五个不同的Ca插入的同源氧化铜族的Tc(M = 1-4)的精确拟合。

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