首页> 外文期刊>The European physical journal, B. Condensed matter physics >Breakdown of the Wiedemann-Franz law in strongly-coupled electron-phonon system, application to the cuprates
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Breakdown of the Wiedemann-Franz law in strongly-coupled electron-phonon system, application to the cuprates

机译:Wiedemann-Franz定律的分解在强耦合电子声子系统中的应用

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With the superconducting cuprates in mind, a set of unitary transformations was used to decouple electrons and phonons in the strong-coupling limit. While phonons remain almost unrenormalised, electrons are transformed into itinerent singlet and triplet bipolarons and thermally excited polarons. The triplet/singlet exchange energy and the binding energy of the bipolarons are thought to account for the spin and charge pseudogaps in the cuprates, respectively. We calculated the Hall Lorenz number of the system to show that the Wiedemann-Franz law breaks down due to the interference of the polaron and bipolaron contributions to heat flow. The model provides a quantitative fit to magnetotransport data in the cuprates. Furthermore we are able to extract the phonon component of the thermal conductivity with the use of experimental data and the model. Our results further validate the use of a charged Bose gas model to describe normal and superconducting properties of unconventional superconductors.
机译:考虑到超导率,我们使用了一组unit变换在强耦合极限下解耦电子和声子。尽管声子几乎未归一化,但电子被转换为流动的单重态和三重态双极化子和热激发极化子。三重态/单重态交换能和双极子的结合能被认为分别解释了铜酸盐中的自旋和带电荷假间隙。我们计算了系统的霍尔洛伦兹数,表明Wiedemann-Franz定律由于极化子和双极化子对热流贡献的干扰而破裂。该模型为铜价中的磁传输数据提供了定量拟合。此外,我们能够利用实验数据和模型来提取热导率的声子分量。我们的结果进一步验证了使用带电的Bose气体模型描述非常规超导体的正态和超导特性。

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