Critical current oscillations in the intrinsic hybrid vortex state of SmFeAs(O,F)
arXiv:1410.7731 · doi:10.1103/PhysRevLett.113.186402
Abstract
In layered superconductors the order parameter may be modulated within the unit cell, leading to non-trivial modifications of the vortex core if the interlayer coherence length is comparable to the interlayer distance. In the iron-pnictide SmFeAs(O,F) (K) this occurs below a cross-over temperature K, which separates two regimes of vortices: anisotropic Abrikosov-like at high and Josephson-like at low temperatures. Yet in the transition region around , hybrid vortices between these two characteristics appear. Only in this region around and for magnetic fields well aligned with the FeAs layers, we observe oscillations of the c-axis critical current periodic in due to a delicate balance of intervortex forces and interaction with the layered potential. shows pronounced maxima when a hexagonal vortex lattice is commensurate with the crystal structure. The narrow temperature window in which oscillations are observed suggests a significant suppression of the order parameter between the superconducting layers in SmFeAs(O,F), despite its low coherence length anisotropy ().
accepted for PRL
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