English

Magnetic moment evolution and spin freezing in doped BaFe$_{2}$As$_{2}$

Superconductivity 2017-09-19 v1

Abstract

Fe-Kβ_{\beta} X-ray emission spectroscopy measurements reveal an asymmetric doping dependence of the magnetic moments μbare\mu_\text{bare} in electron- and hole-doped BaFe2_{2}As2_{2}. At low temperature, μbare\mu_\text{bare} is nearly constant in hole-doped samples, whereas it decreases upon electron doping. Increasing temperature substantially enhances μbare\mu_\text{bare} in the hole-doped region, which is naturally explained by the theoretically predicted crossover into a spin-frozen state. Our measurements demonstrate the importance of Hund's coupling and electronic correlations, especially for hole-doped BaFe2_{2}As2_{2}, and the inadequacy of a fully localized or fully itinerant description of the 122 family of Fe pnictides.

Keywords

Cite

@article{arxiv.1607.04038,
  title  = {Magnetic moment evolution and spin freezing in doped BaFe$_{2}$As$_{2}$},
  author = {Jonathan Pelliciari and Yaobo Huang and Kenji Ishii and Chenglin Zhang and Pengcheng Dai and Gen Fu Chen and Lingyi Xing and Xiancheng Wang and Changqing Jin and Hong Ding and Philipp Werner and Thorsten Schmitt},
  journal= {arXiv preprint arXiv:1607.04038},
  year   = {2017}
}