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铁基超导体(BaK)FeAs中完全非相干正常态下超导性的出现。

Emergence of superconductivity from fully incoherent normal state in an iron-based superconductor (BaK)FeAs.

作者信息

Huang Jianwei, Zhao Lin, Li Cong, Gao Qiang, Liu Jing, Hu Yong, Xu Yu, Cai Yongqing, Wu Dingsong, Ding Ying, Hu Cheng, Zhou Huaxue, Dong Xiaoli, Liu Guodong, Wang Qingyan, Zhang Shenjin, Wang Zhimin, Zhang Fengfeng, Yang Feng, Peng Qinjun, Xu Zuyan, Chen Chuangtian, Zhou Xingjiang

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Sci Bull (Beijing). 2019 Jan 15;64(1):11-19. doi: 10.1016/j.scib.2018.11.017. Epub 2018 Nov 30.

Abstract

In unconventional superconductors, it is generally believed that understanding the physical properties of the normal state is a pre-requisite for understanding the superconductivity mechanism. In conventional superconductors like niobium or lead, the normal state is a Fermi liquid with a well-defined Fermi surface and well-defined quasipartcles along the Fermi surface. Superconductivity is realized in this case by the Fermi surface instability in the superconducting state and the formation and condensation of the electron pairs (Cooper pairing). The high temperature cuprate superconductors, on the other hand, represent another extreme case that superconductivity can be realized in the underdoped region where there is neither well-defined Fermi surface due to the pseudogap formation nor quasiparticles near the antinodal regions in the normal state. Here we report a novel scenario that superconductivity is realized in a system with well-defined Fermi surface but without quasiparticles along the Fermi surface in the normal state. High resolution laser-based angle-resolved photoemission measurements have been performed on an optimally-doped iron-based superconductor (BaK)FeAs. We find that, while sharp superconducting coherence peaks emerge in the superconducting state on the hole-like Fermi surface sheets, no quasiparticle peak is present in the normal state. Its electronic behaviours deviate strongly from a Fermi liquid system. The superconducting gap of such a system exhibits an unusual temperature dependence that it is nearly a constant in the superconducting state and abruptly closes at T. These observations have provided a new platform to study unconventional superconductivity in a non-Fermi liquid system.

摘要

在非常规超导体中,人们普遍认为,理解正常态的物理性质是理解超导机制的先决条件。在像铌或铅这样的常规超导体中,正常态是一种费米液体,具有明确的费米面和沿着费米面的明确准粒子。在这种情况下,超导是通过超导态下的费米面不稳定性以及电子对(库珀对)的形成和凝聚来实现的。另一方面,高温铜酸盐超导体代表了另一种极端情况,即在欠掺杂区域可以实现超导,在该区域,由于赝能隙的形成,既没有明确的费米面,在正常态下反节点区域附近也没有准粒子。在这里,我们报告了一种新的情况,即在一个具有明确费米面但在正常态下沿着费米面没有准粒子的系统中实现了超导。我们对最佳掺杂的铁基超导体(BaK)FeAs进行了基于高分辨率激光的角分辨光电子能谱测量。我们发现,虽然在类空穴费米面片上的超导态中出现了尖锐的超导相干峰,但在正常态下没有准粒子峰。其电子行为与费米液体系统有很大偏差。这样一个系统的超导能隙表现出不寻常的温度依赖性,即在超导态下它几乎是一个常数,并在T时突然关闭。这些观察结果为研究非费米液体系统中的非常规超导提供了一个新的平台。

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