Effect of impurity substitution on band structure and mass renormalization of the correlated FeTeSe superconductor
arXiv:1605.07537 · doi:10.1103/PhysRevB.93.205143
Abstract
Using angle-resolved photoemission spectroscopy (ARPES), we studied the effect of the impurity potential on the electronic structure of FeTeSe superconductor by substituting 10\% of Ni for Fe which leads to an electron doping of the system. We could resolve three hole pockets near the zone center and an electron pocket near the zone corner in the case of FeTeSe, whereas only two hole pockets near the zone center and an electron pocket near the zone corner are resolved in the case of FeNiTeSe, suggesting that the hole pocket having predominantly the orbital character is very sensitive to the impurity scattering. Upon electron doping, the size of the hole pockets decrease and the size of the electron pockets increase as compared to the host compound. However, the observed changes in the size of the electron and hole pockets are not consistent with the rigid-band model. Moreover, the effective mass of the hole pockets is reduced near the zone center and of the electron pockets is increased near the zone corner in the doped FeNiTeSe as compared to FeTeSe. We refer these observations to the changes of the spectral function due to the effect of the impurity potential of the dopants.
8 pages, 3 figures