Gao Yi, Zhou Tao, Huang Huaixiang, Wang Qiang-Hua
Department of Physics and Institute of Theoretical Physics, Nanjing Normal University, Nanjing. 210023, China.
College of Science, Nanjing University of Aeronautics and Astronautics, Nanjing. 210016, China.
Sci Rep. 2015 Mar 18;5:9251. doi: 10.1038/srep09251.
Based on the possible superconducting (SC) pairing symmetries recently proposed, the quasiparticle interference (QPI) patterns in electron- and hole-doped Sr₂IrO₄ are theoretically investigated. In the electron-doped case, the QPI spectra can be explained based on a model similar to the octet model of the cuprates while in the hole-doped case, both the Fermi surface topology and the sign of the SC order parameter resemble those of the iron pnictides and there exists a QPI vector resulting from the interpocket scattering between the electron and hole pockets. In both cases, the evolution of the QPI vectors with energy and their behaviors in the nonmagnetic and magnetic impurity scattering cases can well be explained based on the evolution of the constant-energy contours and the sign structure of the SC order parameter. The QPI spectra presented in this paper can be compared with future scanning tunneling microscopy experiments to test whether there are SC phases in electron- and hole-doped Sr₂IrO₄ and what the pairing symmetry is.
基于最近提出的可能的超导(SC)配对对称性,从理论上研究了电子掺杂和空穴掺杂的Sr₂IrO₄中的准粒子干涉(QPI)图案。在电子掺杂的情况下,QPI光谱可以基于类似于铜酸盐八重态模型的模型来解释,而在空穴掺杂的情况下,费米面拓扑和SC序参量的符号类似于铁基pnictides,并且存在由电子口袋和空穴口袋之间的跨口袋散射产生的QPI矢量。在这两种情况下,基于等能轮廓的演化和SC序参量的符号结构,可以很好地解释QPI矢量随能量的演化及其在非磁性和磁性杂质散射情况下的行为。本文给出的QPI光谱可以与未来的扫描隧道显微镜实验进行比较,以测试电子掺杂和空穴掺杂的Sr₂IrO₄中是否存在SC相以及配对对称性是什么。