English

In-plane spin excitation anisotropy in the paramagnetic phase of NaFeAs

Superconductivity 2019-12-23 v1

Abstract

We use unpolarized and polarized inelastic neutron scattering to study low-energy spin excitations in NaFeAs, which exhibits a tetragonal-to-orthorhombic lattice distortion at Ts58T_s\approx 58 K followed by a collinear antiferromagnetic (AF) order below TN45T_N\approx 45 K. In the AF ordered state (T<TNT<T_N), spin waves are entirely c-axis polarized below \sim10 meV, exhibiting a gap of 4\sim4 meV at the AF zone center and disperse to \sim7 meV near the c-axis AF zone boundary. On warming to the paramagnetic state with orthorhombic lattice distortion (TN<T<TsT_N<T<T_s), spin excitations become anisotropic within the FeAs plane. Upon further warming to the paramagnetic tetragonal state (T>TsT>T_s), spin excitations become more isotropic. Since similar magnetic anisotropy is also observed in the paramagnetic tetragonal phase of superconducting BaFe1.904_{1.904}Ni0.096_{0.096}As2_2, our results suggest that the spin excitation anisotropy in superconducting iron pnictides originates from similar anisotropy already present in their parent compounds.

Keywords

Cite

@article{arxiv.1310.1143,
  title  = {In-plane spin excitation anisotropy in the paramagnetic phase of NaFeAs},
  author = {Yu Song and Louis-Pierre Regnault and Chenglin Zhang and Guotai Tan and Scott V. Carr and Songxue Chi and A. D. Christianson and Tao Xiang and Pengcheng Dai},
  journal= {arXiv preprint arXiv:1310.1143},
  year   = {2019}
}

Comments

7 pages, 4 figures