paper

Doping evolution of the anisotropic upper critical fields in iron-based superconductor BaKFeAs

arXiv:1711.10094

Abstract

In-plane resistivity measurements as a function of temperature and magnetic field up to 35~T with precise orientation within the crystallographic plane were used to study the upper critical field, , of the hole-doped iron-based superconductor BaKFeAs. Compositions of the samples studied were spanning from underdoped 0.17 (=12~K) and =0.22 (=20~K), both in the coexistence range of stripe magnetism and superconductivity, though optimal doping =0.39 (=38.4~K), =0.47 (=37.2~K), to overdoped =0.65 (=22~K), =0.83 (=10~K). We find notable doping asymmetry of the shapes of the anisotropic suggesting important role of paramagnetic limiting effects in configuration in overdoped compositions and multi-band effects in underdoped compositions.