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欠掺杂高温超导铜氧化物中的正常态节点电子结构。

Normal-state nodal electronic structure in underdoped high-Tc copper oxides.

机构信息

Cavendish Laboratory, Cambridge University, JJ Thomson Avenue, Cambridge CB3 OHE, UK.

National High Magnetic Field Laboratory, Los Alamos National Laboratory (LANL), Los Alamos, New Mexico 87504, USA.

出版信息

Nature. 2014 Jul 3;511(7507):61-4. doi: 10.1038/nature13326. Epub 2014 Jun 15.

Abstract

An outstanding problem in the field of high-transition-temperature (high-Tc) superconductivity is the identification of the normal state out of which superconductivity emerges in the mysterious underdoped regime. The normal state uncomplicated by thermal fluctuations can be studied using applied magnetic fields that are sufficiently strong to suppress long-range superconductivity at low temperatures. Proposals in which the normal ground state is characterized by small Fermi surface pockets that exist in the absence of symmetry breaking have been superseded by models based on the existence of a superlattice that breaks the translational symmetry of the underlying lattice. Recently, a charge superlattice model that positions a small electron-like Fermi pocket in the vicinity of the nodes (where the superconducting gap is minimum) has been proposed as a replacement for the prevalent superlattice models that position the Fermi pocket in the vicinity of the pseudogap at the antinodes (where the superconducting gap is maximum). Although some ingredients of symmetry breaking have been recently revealed by crystallographic studies, their relevance to the electronic structure remains unresolved. Here we report angle-resolved quantum oscillation measurements in the underdoped copper oxide YBa2Cu3O6 + x. These measurements reveal a normal ground state comprising electron-like Fermi surface pockets located in the vicinity of the nodes, and also point to an underlying superlattice structure of low frequency and long wavelength with features in common with the charge order identified recently by complementary spectroscopic techniques.

摘要

高温超导领域的一个突出问题是确定在神秘的欠掺杂区域中超导出现的正常状态。在低温下,可以使用足够强的外加磁场来抑制长程超导,从而研究不受热涨落影响的正常状态。以前的一些理论认为,正常基态的特征是存在于没有对称破缺的小费米口袋,但这些理论已经被基于超晶格存在的模型所取代,超晶格打破了底层晶格的平移对称性。最近,有人提出了一个电荷超晶格模型,该模型将一个小的电子型费米口袋置于节点(超导能隙最小的位置)附近,作为取代将费米口袋置于赝能隙附近的(超导能隙最大的位置)流行超晶格模型的替代品。尽管最近的晶体学研究揭示了一些对称破缺的成分,但它们与电子结构的关系仍未得到解决。在这里,我们报告了在欠掺杂铜氧化物 YBa2Cu3O6 + x 中进行的角分辨量子振荡测量。这些测量结果表明,正常基态包含位于节点附近的电子型费米口袋,并且还指向具有与最近通过互补光谱技术确定的电荷有序共同特征的低频和长波长的超晶格结构。

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