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朝向解决欠掺杂高温超导材料中的费米面问题。

Towards resolution of the Fermi surface in underdoped high-Tc superconductors.

机构信息

Cavendish Laboratory, Cambridge University, JJ Thomson Avenue, Cambridge CB3 0HE, UK.

出版信息

Rep Prog Phys. 2012 Oct;75(10):102501. doi: 10.1088/0034-4885/75/10/102501. Epub 2012 Sep 18.

Abstract

We survey recent experimental results including quantum oscillations and complementary measurements probing the electronic structure of underdoped cuprates, and theoretical proposals to explain them. We discuss quantum oscillations measured at high magnetic fields in the underdoped cuprates that reveal a small Fermi surface section, comprising quasiparticles that obey Fermi-Dirac statistics, unaccompanied by other states of comparable thermodynamic mass at the Fermi level. The location of the observed Fermi surface section at the nodes is indicated by a body of evidence including the collapse in Fermi velocity measured by quantum oscillations, which is found to be associated with the nodal density of states observed in angular resolved photoemission, the persistence of quantum oscillations down to low fields in the vortex state, the small value of density of states from heat capacity and the multiple frequency quantum oscillation pattern consistent with nodal magnetic breakdown of bilayer-split pockets. A nodal Fermi surface pocket is further consistent with the observation of a density of states at the Fermi level concentrated at the nodes in photoemission experiments, and the antinodal pseudogap observed by photoemission, optical conductivity, nuclear magnetic resonance (NMR) Knight shift, as well as other complementary diffraction, transport and thermodynamic measurements. One of the possibilities considered is that the small Fermi surface pockets observed at high magnetic fields can be understood in terms of Fermi surface reconstruction by a form of small wavevector charge order, observed over long lengthscales in experiments such as NMR and x-ray scattering, potentially accompanied by an additional mechanism to gap the antinodal density of states.

摘要

我们调查了最近的实验结果,包括量子振荡和互补测量,这些结果探测了欠掺杂 cuprate 的电子结构,以及解释这些结果的理论建议。我们讨论了在欠掺杂 cuprate 中在高磁场下测量的量子振荡,这些结果揭示了一个小的费米面部分,由遵守费米-狄拉克统计的准粒子组成,而在费米能级处没有其他具有相当热力学质量的状态。观察到的费米面部分位于节点的位置由大量证据表明,包括量子振荡测量的费米速度的崩溃,这与在角分辨光发射中观察到的节点态密度有关,在涡旋态下,量子振荡一直持续到低场,热容中的态密度较小,以及与双层分裂口袋的节点磁击穿一致的多频量子振荡模式。节点费米面口袋进一步与光发射实验中在费米能级处集中在节点的态密度的观察结果一致,以及光发射、光学导率、核磁共振(NMR)奈特位移以及其他互补衍射、输运和热力学测量中观察到的反节点赝能隙一致。考虑的可能性之一是,在高磁场下观察到的小费米面口袋可以用小波矢电荷有序的形式来理解,这种形式的电荷有序在 NMR 和 X 射线散射等实验中观察到长程尺度上,可能伴随着另外一种机制来隙对反节点态密度。

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