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高温超导理论的实验限制。

Experimental constraints on the theory of high-tc superconductivity.

出版信息

Science. 1992 Jun 12;256(5063):1526-31. doi: 10.1126/science.256.5063.1526.

Abstract

Analysis of the many experiments on high-temperature superconductivity indicate several essential aspects of any theory. The conductivity and other transport properties as a function of disorder, temperature, and frequency point to a non-Fermi liquid-like behavior, whereas photoemission experiments and magnetic properties indicate the presence of a Fermi surface in momentum space. To reconcile this apparent contradiction, a new type of electron liquid, called a Luttinger liquid, has been postulated, and the present article aims to show the need for this postulate. Theory and experiment indicate that the suitable phenomenological electronic structure model of the CuO layers is that of the one-band Hubbard model. It is also argued that experiment clearly indicates that interlayer interactions strongly affect the superconducting transition temperature, T(c), consistent with the fact that no theoretical calculations on two-dimensional Hubbard models have resulted in the prediction of high transition temperatures, and that anyon models are not favored by experiment.

摘要

对高温超导的众多实验进行分析表明,任何理论都必须考虑几个基本方面。电导率和其他输运性质随无序、温度和频率的变化表明其具有非费米液体行为,而光发射实验和磁性质则表明在动量空间中存在费米面。为了解决这一明显的矛盾,人们提出了一种新型电子液体,称为 Luttinger 液体,本文旨在表明这一假设的必要性。理论和实验表明,CuO 层合适的唯象电子结构模型是单带 Hubbard 模型。此外,实验还清楚地表明,层间相互作用强烈影响超导转变温度 T(c),这与二维 Hubbard 模型的理论计算没有预测到高温转变温度的事实以及任何子模型不被实验所支持的事实是一致的。

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