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Coexistence of Jahn-Teller effect and AFM in two-orbital model for s±-wave iron based superconductors

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Abstract The origin of pairing mechanism and the coexisting order parameters in F e -based superconductors have been attracting increasing attention. The tetragonal to orthorhombic phase transition which leads the… Click to show full abstract

Abstract The origin of pairing mechanism and the coexisting order parameters in F e -based superconductors have been attracting increasing attention. The tetragonal to orthorhombic phase transition which leads the antiferromagnetic phase transition in many F e -based superconductors is one of the current heat discussions of electronic order. The distortion and antiferromagnetism coexist in the phase diagrams of such superconductors. A tight-binding two band model with the coexistence of Jahn-Teller distortion and antiferromagnetism is being proposed here for s ± -wave pairing symmetry of the form c o s k x × c o s k y in the mean field approximation. The model is solved by Zubarev’s double-time Green’s function technique to find their self-consistent gap equations. Then these gap equations are solved self-consistently numerically and the specific heat, density of states and band energies are studied for the system.

Keywords: wave; jahn teller; model; based superconductors; coexistence jahn

Journal Title: Solid State Communications
Year Published: 2021

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