paper

Fermi liquid state and enhanced electron correlations in the new iron pnictide CaFeAs

arXiv:0904.4188

Abstract

The newly discovered CaFeAs system displays low-temperature Fermi liquid behavior, with enhanced electron-electron correlations. At high temperatures, the magnetic susceptibility shows Curie-Weiss behavior, with a large temperature-independent contribution. Antiferromagnetic ordering is observed below T = (88.0 1.0) K, possibly via a spin density wave (SDW) transition. A remarkably sharp drop in resistivity occurs below T = (26.4 1.0) K, correlated with a similarly abrupt increase in the susceptibility, but no visible feature in the specific heat. The electronic specific heat coefficient at low temperatures is close to 0.02 J mol K, but a higher value for (0.08 J mol K can be inferred from a linear CT \textit{vs.} T just above T. The Kadowaki-Woods ratio A = 55 cm mol KmJ is nearly two orders of magnitude larger than that of heavy fermions.