Complex vortex-antivortex dynamics in the magnetic superconductor EuFe2(As0.7P0.3)2

Abstract

We report on the investigation of the magnetic superconductor EuFe2(As0.7P0.3)2 based on muon-spin spectroscopy and ac magnetic susceptibility () measurements. The dependence of the internal field at the muon site on temperature is indicative of a ferromagnetic ordering of Eu2+ magnetic moments and only the conventional magnon scattering governs the longitudinal relaxation rate at low temperatures. At the same time, we observe a rich phenomenology for the imaginary component of the susceptibility by means of both standard ac susceptibility and a novel technique based on a microwave coplanar waveguide resonator. In particular, we detect activated trends for several features in over frequencies spanning ten orders of magnitude. We interpret our results in terms of the complex dynamics of vortices and antivortices influenced by the underlying structure of magnetic domains.

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