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Superconductivity in topologically nontrivial material Au2Pb

Authors :
Xing, Ying
Wang, He
Li, Chaokai
Zhang, Xiao
Liu, Jun
Zhang, Yangwei
Luo, Jiawei
Wang, Ziqiao
Wang, Yong
Ling, Langsheng
Tian, Mingliang
Jia, Shuang
Feng, Ji
Liu, Xiong-Jun
Wei, Jian
Wang, Jian
Source :
npj Quantum Materials 1, Article number: 16005 (2016)
Publication Year :
2016

Abstract

The search for nontrivial superconductivity in novel quantum materials is currently a most attractive topic in condensed matter physics and material science. The experimental studies have progressed quickly over the past couple of years. In this article, we report systematic studies of superconductivity in Au2Pb single crystals. The bulk superconductivity (onset transition temperature, Tconset= 1.3 K) of Au2Pb is characterized by both transport and diamagnetic measurements, where the upper critical field Hc2 shows unusual quasi-linear temperature dependence. The superconducting gap is revealed by point contact measurement with gold tip. However, when using tungsten (W) tip, which is much harder, the superconducting gap probed is largely enhanced as demonstrated by the increases of both Tconset and upper critical field (Hc2). This can be interpreted as a result of increase in density of states under external anisotropic stress imposed by the tip, as revealed by first-principles calculations. Furthermore, novel phase winding of the pseudospin texture along k-space loops around the Fermi energy is uncovered from the calculations, indicating that the observed superconductivity in Au2Pb may have nontrivial topology.

Details

Database :
arXiv
Journal :
npj Quantum Materials 1, Article number: 16005 (2016)
Publication Type :
Report
Accession number :
edsarx.1603.01021
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/npjquantmats.2016.5