English

Phonon anomalies in some iron-telluride materials

Strongly Correlated Electrons 2016-05-18 v2 Superconductivity

Abstract

The detailed temperature dependence of the infrared-active mode in Fe1.03_{1.03}Te (TN68T_N\simeq 68 K) and Fe1.13_{1.13}Te (TN56T_N\simeq 56 K) has been examined, and the position, width, strength, and asymmetry parameter determined using an asymmetric Fano profile superimposed on an electronic background. In both materials the frequency of the mode increases as the temperature is reduced; however, there is also a slight asymmetry in the line shape, indicating that the mode is coupled to either spin or charge excitations. Below TNT_N there is an anomalous decrease in frequency and the mode shows little temperature dependence, at the same time becoming more symmetric, suggesting a reduction in spin- or electron-phonon coupling. The frequency of the infrared-active mode and the magnitude of the shift below TNT_N are predicted reasonably well by first-principles calculations; however, the predicted splitting of the mode is not observed. In superconducting FeTe0.55_{0.55}Se0.45_{0.45} (Tc14T_c\simeq 14 K) the infrared-active EuE_u mode displays asymmetric line shape at all temperatures, which is most pronounced between 100 - 200 K, indicating the presence of either spin- or electron-phonon coupling, which may be a necessary prerequisite for superconductivity in this class of materials.

Cite

@article{arxiv.1602.08077,
  title  = {Phonon anomalies in some iron-telluride materials},
  author = {C. C. Homes and Y. M. Dai and J. Schneeloch and R. D. Zhong and G. D. Gu},
  journal= {arXiv preprint arXiv:1602.08077},
  year   = {2016}
}

Comments

9 pages, 5 figures and 3 tables, one page of supplemental information. Updated to reflect the published version