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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Polaron formation as origin of unconventional isotope effects in cuprate superconductors
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Polaron formation as origin of unconventional isotope effects in cuprate superconductors

机译:极化子形成是铜酸盐超导体中非常规同位素效应的起源

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摘要

Various unconventional isotope effects have been reported in high-temperature superconducting copper oxides which are beyond the scheme of BCS theory. Their origin is investigated within polaron theory which leads to a renormalization of the single particle energies and introduces a level shift here. It is found that the exponential squeezing of the second nearest neighbour hopping integral carries the correct isotope effect on the superconducting transition temperature T-c, as well as the one on the penetration depth. The average superconducting gap is predicted to have an isotope effect comparable to the one on the penetration depth. The results imply that the coupling of the electronic degrees of freedom to the Jahn-Teller Q(2)-type mode is the origin of these isotope effects.
机译:在高温超导铜氧化物中已报道了各种非常规的同位素效应,这超出了BCS理论的范围。在极化子理论中研究了它们的起源,这导致了单粒子能量的重新归一化,并在此处引入了电平移动。发现第二近邻跳跃积分的指数压缩对超导转变温度T-c以及对穿透深度都具有正确的同位素效应。预计平均超导间隙具有与渗透深度相当的同位素效应。结果表明,电子自由度与Jahn-Teller Q(2)型模式的耦合是这些同位素效应的起源。

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