Superconductivity with broken time-reversal symmetry inside a superconducting s -wave state

V. Grinenko,R. Sarkar,K. Kihou,C. H. Lee,I. Morozov,S. Aswartham, B. Büchner, P. Chekhonin,W. Skrotzki, K. Nenkov, R. Hühne,K. Nielsch, S. -L. Drechsler, V. L. Vadimov,M. A. Silaev,P. A. Volkov,I. Eremin,H. Luetkens,H.-H. Klauss

arXiv: Superconductivity(2020)

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摘要
In general, magnetism and superconductivity are antagonistic to each other. However, there are several families of superconductors in which superconductivity coexists with magnetism, and a few examples are known where the superconductivity itself induces spontaneous magnetism. The best known of these compounds are Sr 2 RuO 4 and some non-centrosymmetric superconductors. Here, we report the finding of a narrow dome of an s+is^' superconducting phase with apparent broken time-reversal symmetry (BTRS) inside the broad s -wave superconducting region of the centrosymmetric multiband superconductor Ba 1 − x K x Fe 2 As 2 (0.7 ≲ x ≲ 0.85). We observe spontaneous magnetic fields inside this dome using the muon spin relaxation (μSR) technique. Furthermore, our detailed specific heat study reveals that the BTRS dome appears very close to a change in the topology of the Fermi surface. With this, we experimentally demonstrate the likely emergence of a novel quantum state due to topological changes of the electronic system.
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关键词
Electronic properties and materials,Magnetic properties and materials,Phase transitions and critical phenomena,Quantum fluids and solids,Superconducting properties and materials,Physics,general,Theoretical,Mathematical and Computational Physics,Classical and Continuum Physics,Atomic,Molecular,Optical and Plasma Physics,Condensed Matter Physics,Complex Systems
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