English

Optical properties of $A$Fe$_\mathbf{2}$As$_\mathbf{2}$ ($A=\,$Ca, Sr, and Ba) single crystals

Strongly Correlated Electrons 2017-04-04 v3 Superconductivity

Abstract

The detailed optical properties have been determined for the iron-based materials AAFe2_2As2_2, where A=A=\,Ca, Sr, and Ba, for light polarized in the iron-arsenic (aba-b) planes over a wide frequency range, above and below the magnetic and structural transitions at TN=T_N = 172, 195, and 138 K, respectively. The real and imaginary parts of the complex conductivity are fit simultaneously using two Drude terms in combination with a series of oscillators. Above TNT_N, the free-carrier response consists of a weak, narrow Drude term, and a strong, broad Drude term, both of which show only a weak temperature dependence. Below TNT_N there is a slight decrease of the plasma frequency but a dramatic drop in the scattering rate for the narrow Drude term, and for the broad Drude term there is a significant decrease in the plasma frequency, while the decrease in the scattering rate, albeit significant, is not as severe. The small values observed for the scattering rates for the narrow Drude term for TTNT\ll{T_N} may be related to the Dirac cone-like dispersion of the electronic bands. Below TNT_N new features emerge in the optical conductivity that are associated with the reconstruction Fermi surface and the gapping of bands at Δ1\Delta_1 \simeq 45 - 80 meV, and Δ2\Delta_2 \simeq 110 - 210 meV. The reduction in the spectral weight associated with the free carriers is captured by the gap structure, specifically, the spectral weight from the narrow Drude term appears to be transferred into the low-energy gap feature, while the missing weight from the broad term shifts to the high-energy gap.

Keywords

Cite

@article{arxiv.1608.05709,
  title  = {Optical properties of $A$Fe$_\mathbf{2}$As$_\mathbf{2}$ ($A=\,$Ca, Sr, and Ba) single crystals},
  author = {Y. M. Dai and A. Akrap and S. L. Bud'ko and P. C. Canfield and C. C. Homes},
  journal= {arXiv preprint arXiv:1608.05709},
  year   = {2017}
}

Comments

11 pages, 4 figures and 2 tables; 6 pages of supplemental material. Revisions conform with published version