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赝能隙巨磁阻锰氧化物中的节线准粒子

Nodal quasiparticle in pseudogapped colossal magnetoresistive manganites.

作者信息

Mannella N, Yang W L, Zhou X J, Zheng H, Mitchell J F, Zaanen J, Devereaux T P, Nagaosa N, Hussain Z, Shen Z-X

机构信息

Department of Physics, Applied Physics, and Stanford Synchrotron Radiation Laboratory, Stanford University, Stanford, California 94305, USA.

出版信息

Nature. 2005 Nov 24;438(7067):474-8. doi: 10.1038/nature04273.

Abstract

A characteristic feature of the copper oxide high-temperature superconductors is the dichotomy between the electronic excitations along the nodal (diagonal) and antinodal (parallel to the Cu-O bonds) directions in momentum space, generally assumed to be linked to the 'd-wave' symmetry of the superconducting state. Angle-resolved photoemission measurements in the superconducting state have revealed a quasiparticle spectrum with a d-wave gap structure that exhibits a maximum along the antinodal direction and vanishes along the nodal direction. Subsequent measurements have shown that, at low doping levels, this gap structure persists even in the high-temperature metallic state, although the nodal points of the superconducting state spread out in finite 'Fermi arcs'. This is the so-called pseudogap phase, and it has been assumed that it is closely linked to the superconducting state, either by assigning it to fluctuating superconductivity or by invoking orders which are natural competitors of d-wave superconductors. Here we report experimental evidence that a very similar pseudogap state with a nodal-antinodal dichotomous character exists in a system that is markedly different from a superconductor: the ferromagnetic metallic groundstate of the colossal magnetoresistive bilayer manganite La1.2Sr1.8Mn2O7. Our findings therefore cast doubt on the assumption that the pseudogap state in the copper oxides and the nodal-antinodal dichotomy are hallmarks of the superconductivity state.

摘要

氧化铜高温超导体的一个典型特征是,在动量空间中,沿节点(对角线)和反节点(平行于铜氧键)方向的电子激发存在二分性,一般认为这与超导态的“d波”对称性有关。在超导态下进行的角分辨光电子能谱测量揭示了一种具有d波能隙结构的准粒子谱,该能谱在反节点方向呈现最大值,在节点方向消失。随后的测量表明,在低掺杂水平下,即使在高温金属态,这种能隙结构仍然存在,尽管超导态的节点点在有限的“费米弧”中扩散开来。这就是所谓的赝能隙相,人们认为它与超导态密切相关,要么将其归因于波动的超导性,要么归因于作为d波超导体自然竞争态的有序态。在此,我们报告实验证据表明,在一个与超导体显著不同的体系中存在一种非常相似的具有节点 - 反节点二分特征的赝能隙态:巨磁阻双层锰氧化物La1.2Sr1.8Mn2O7的铁磁金属基态。因此,我们的发现对氧化铜中的赝能隙态和节点 - 反节点二分性是超导态标志这一假设提出了质疑。

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