Coexistence of ferromagnetism and superconductivity in iron based pnictides: a time resolved magnetooptical study
arXiv:1410.4651 · doi:10.1038/srep07754
Abstract
Ferromagnetism and superconductivity are antagonistic phenomena. Their coexistence implies either a modulated ferromagnetic order parameter on a lengthscale shorter than the superconducting coherence length or a weak exchange coupling between the itinerant superconducting electrons and the localized ordered spins. In some iron based pnictide superconductors the coexistence of ferromagnetism and superconductivity has been clearly demonstrated. The nature of the coexistence, however, remains elusive since no clear understanding of the spin structure in the superconducting state has been reached and the reports on the coupling strength are controversial. We show, by a direct optical pump-probe experiment, that the coupling is weak, since the transfer of the excess energy from the itinerant electrons to ordered localized spins is much slower than the electron-phonon relaxation, implying the coexistence without the short-lengthscale ferromagnetic order parameter modulation. Remarkably, the polarization analysis of the coherently excited spin wave response points towards a simple ferromagnetic ordering of spins with two distinct types of ferromagnetic domains.
References in corpus (7)
- Superconductivity induced by phosphorus doping and its coexistence with ferromagnetism in EuFe(AsP)
- Scanning Tunneling Spectroscopy and Vortex Imaging in the Iron-Pnictide Superconductor BaFeCoAs
- Antiferromagnetic transition in EuFeAs: A possible parent compound for superconductors
- Observation of Lattice and Andreev Bound States of Vortices in Ba0.6K0.4Fe2As2 Single Crystals with Scanning Tunneling Microscopy/Spectroscopy
- Metamagnetic transition in EuFeAs single crystals
- Effects of the magnetic orderings on the dynamical conductivity: optical investigations of EuFeAs single crystals
- Electron-phonon coupling and charge gap in spin-density-wave iron-pnictides from quasiparticle relaxation dynamics
Cited by in corpus (6)
- Theory of the magnetic domains phases in ferromagnetic superconductors
- Superconductivity driven helical magnetic structure in EuRbFeAs ferromagnetic superconductor
- Spin reorientation of the Fe moments in EuCaFeAs: Evidence for a strong interplay of Eu and Fe magnetism
- Ultrafast dynamics in the Lifshitz-type 5 pyrochlore antiferromagnet CdOsO
- Magnetic and superconducting phase diagram of Eu(FeNi)As
- Fluence dependent femtosecond quasi-particle and Eu^{2+} -spin relaxation dynamics in EuFe_{2}(As,P)_{2}