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高温超导相中区的赝能隙相中的破旋转对称。

Broken rotational symmetry in the pseudogap phase of a high-T(c) superconductor.

机构信息

Département de Physique and RQMP, Université de Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.

出版信息

Nature. 2010 Jan 28;463(7280):519-22. doi: 10.1038/nature08716.

Abstract

The nature of the pseudogap phase is a central problem in the effort to understand the high-transition-temperature (high-T(c)) copper oxide superconductors. A fundamental question is what symmetries are broken when the pseudogap phase sets in, which occurs when the temperature decreases below a value T*. There is evidence from measurements of both polarized neutron diffraction and the polar Kerr effect that time-reversal symmetry is broken, but at temperatures that differ significantly from one another. Broken rotational symmetry was detected from both resistivity measurements and inelastic neutron scattering at low doping, and from scanning tunnelling spectroscopy at low temperature, but showed no clear relation to T*. Here we report the observation of a large in-plane anisotropy of the Nernst effect in YBa(2)Cu(3)O(y) that sets in precisely at T* throughout the doping phase diagram. We show that the CuO chains of the orthorhombic lattice are not responsible for this anisotropy, which is therefore an intrinsic property of the CuO(2) planes. We conclude that the pseudogap phase is an electronic state that strongly breaks four-fold rotational symmetry. This narrows the range of possible states considerably, pointing to stripe or nematic order.

摘要

赝能隙相的本质是理解高温超导铜氧化物的关键问题。当赝能隙相出现时,即当温度降至 T以下时,会发生什么对称性破缺是一个基本问题。来自极化中子衍射和偏振克尔效应的测量都有证据表明时间反转对称性被打破,但温度差异很大。在低掺杂时,从电阻率测量和非弹性中子散射以及低温扫描隧道光谱都检测到旋转对称性被打破,但与 T没有明显的关系。在这里,我们报告了在整个掺杂相图中,YBa(2)Cu(3)O(y)中的聂耳效应的大面内各向异性在 T*处精确出现的观察结果。我们表明,正交晶格的 CuO 链不是这种各向异性的原因,因此它是 CuO(2)平面的固有特性。我们得出结论,赝能隙相是一种强烈破坏四重旋转对称性的电子态。这大大缩小了可能状态的范围,指向条纹或向列有序。

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