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首页> 外文期刊>Physical review, B >Sign-reversal superconducting gaps revealed by phase-referenced quasiparticle interference of impurity-induced bound states in (Li1-xFex)OHFe1-yZnySe
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Sign-reversal superconducting gaps revealed by phase-referenced quasiparticle interference of impurity-induced bound states in (Li1-xFex)OHFe1-yZnySe

机译:通过(Li1-Xfex)OHF1-YZNYSE的相位引用的杂质结合态的相位引用的Quasiplicle干扰展示的标志反转超导间隙

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By measuring the spatial distribution of differential conductance near nonmagnetic impurities on Fe sites, we have obtained the quasiparticle interference (QPI) patterns in the (Li1-xFex) OHFe1-yZnySe superconductor with only electron Fermi surfaces. By taking the Fourier transform on these patterns, we investigate the scattering features between the two circles of electron pockets formed by folding or hybridization. We treat the data by using the recent theoretical approach [Chi et al., arXiv:1710.09089], which is specially designed for the impurity-induced bound states. It is found that the opposite superconducting gap signs on the two electron pockets can be directly visualized by the phase-referenced QPI technique, indicating that the Cooper pairing is induced by the repulsive interaction. Our results show that this method is also applicable for data measured for multiple impurities, which provides an easy and feasible way for detecting the gap function of unconventional superconductors.
机译:通过测量Fe位点上的非磁性杂质附近的差分电导的空间分布,我们已经通过仅电子费米表面获得了(Li1-Xfex)OHFE1-YZNYSE超导体中的Quasiplicle干扰(QPI)图案。通过在这些图案上取傅里叶变换,我们研究通过折叠或杂交形成的电子袋的两个圆圈之间的散射特征。我们使用最近的理论方法进行对待数据[Chi等,Arxiv:1710.09089],其专为杂质引起的染色状态而设计。发现两个电子袋上的相对的超导间隙标志可以通过相位参考的QPI技术直接可视化,表明Cooper配对由排斥相互作用引起。我们的研究结果表明,该方法也适用于多种杂质测量的数据,该方法提供了一种用于检测非传统超导体的间隙函数的简便而可行的方式。

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