Temperature dependence of quasiparticle interference in $d$-wave superconductors

Author:

Al Rashid Harun1,Goyal Garima1,Akbari Alireza2,Singh Dheeraj Kumar1

Affiliation:

1. Thapar University

2. Max Planck Institute for Chemical Physics of Solids

Abstract

We investigate the temperature dependence of quasiparticle interference in the high T_cTc-cuprates using an exact-diagonalization + Monte-Carlo based scheme to simulate the dd-wave superconducting order parameter. The quasiparticle interference patterns have features largely resulting from the scattering vectors of the octet model at lower temperature. Our findings suggest that the features of quasiparticle interference in the pseudogap region of the phase diagram are also dominated by the set of scattering vectors belonging to the octet model because of the persisting antinodal gap beyond the superconducting transition T_cTc. However, beyond a temperature when the antinodal gap becomes very small, a set of scattering vectors different from those belonging to the octet model are responsible for the quasiparticle interference patterns. With a rise in temperature, the patterns are increasingly broadened.

Funder

Department of Science and Technology, Ministry of Science and Technology

Publisher

Stichting SciPost

Subject

Statistical and Nonlinear Physics,Atomic and Molecular Physics, and Optics,Nuclear and High Energy Physics,Condensed Matter Physics

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