English

Orbital-Selective Band Structure Evolution in BaFe$_{2-x}$M$_x$As$_2$ (M = Cr, Co, Cu, Ru and Mn) Probed by Polarization-Dependent ARPES

Superconductivity 2026-05-11 v2

Abstract

We present a systematic study of the evolution of the band structure in the Fe-based superconductor family BaFe2x_{2-x}Mx_xAs2_2 (M = Cr, Co, Cu, Ru and Mn) using polarization-dependent angle-resolved photoemission spectroscopy (ARPES). Low-substituted samples, with comparable spin-density wave transition temperatures (TSDWT_\text{SDW}), were chosen to facilitate controlled comparisons. The sizes of the central hole pockets (α\alpha, β\beta, and γ\gamma) remain largely unchanged across different substitutions, showing no clear correlation with either TSDWT_\text{SDW} or the As height relative to the Fe planes. However, subtle trends are observed: a modest increase in the size of the ηX\eta_\text{X} electron pocket correlates with the suppression of TSDWT_\text{SDW}. Furthermore, the contraction of the ηX\eta_\text{X} pocket appears to be linked to an increase in the As height relative to the Fe planes. Our results suggest that the suppression of TSDWT_\text{SDW} is primarily driven by changes in the Fe-As bond length, with the effect being more pronounced in electronic states with planar character. These findings provide insight into the electronic structure of BaFe2x_{2-x}Mx_xAs2_2.

Keywords

Cite

@article{arxiv.2509.19190,
  title  = {Orbital-Selective Band Structure Evolution in BaFe$_{2-x}$M$_x$As$_2$ (M = Cr, Co, Cu, Ru and Mn) Probed by Polarization-Dependent ARPES},
  author = {K. R. Pakuszewski and M. R. Cantarino and I. Romanenko and A. P. Machado and M. M. Piva and G. S. Freitas and H. B. Pizzi and F. A. Garcia and P. G. Pagliuso and C. Adriano},
  journal= {arXiv preprint arXiv:2509.19190},
  year   = {2026}
}