English

Distinct electronic nematicities between electron and hole underdoped iron pnictides

Superconductivity 2011-10-13 v1

Abstract

We systematically investigated the in-plane resistivity anisotropy of electron-underdoped EuFe2xCoxAs2EuFe_{2-x}Co_xAs_2 and BaFe2xCoxAs2BaFe_{2-x}Co_xAs_2, and hole-underdoped Ba1xKxFe2As2Ba_{1-x}K_xFe_2As_2. Large in-plane resistivity anisotropy was found in the former samples, while {\it tiny} in-plane resistivity anisotropy was detected in the latter ones. When it is detected, the anisotropy starts above the structural transition temperature and increases smoothly through it. As the temperature is lowered further, the anisotropy takes a dramatic enhancement through the magnetic transition temperature. We found that the anisotropy is universally tied to the presence of non-Fermi liquid T-linear behavior of resistivity. Our results demonstrate that the nematic state is caused by electronic degrees of freedom, and the microscopic orbital involvement in magnetically ordered state must be fundamentally different between the hole and electron doped materials.

Keywords

Cite

@article{arxiv.1012.2731,
  title  = {Distinct electronic nematicities between electron and hole underdoped iron pnictides},
  author = {J. J. Ying and X. F. Wang and T. Wu and Z. J. Xiang and R. H. Liu and Y. J. Yan and A. F. Wang and M. Zhang and G. J. Ye and P. Cheng and J. P. Hu and X. H. Chen},
  journal= {arXiv preprint arXiv:1012.2731},
  year   = {2011}
}
R2 v1 2026-06-21T16:57:43.981Z