Phonon spectra in the parent superconducting iron-tuned telluride Fe1+xTe from inelastic neutron scattering and ab initio calculations
Mohamed Zbiri, Romain Viennois
DOI 10.1103/PhysRevB.96.134304 · Physical Review B
Active bibliographic source — not scientific approval
Bibliographic access preserves source history; it does not approve extracted materials or validate reported claims. Review warnings on each occurrence separately.
Abstract
We report inelastic neutron scattering measurements of phonon spectra in the parent superconductor iron-tuned chalcogenide Fe1+xTe for two different x contents (x≤0.11) using neutron time-of-flight technique. Thermal neutron spectroscopy allowed the collection of the low-temperature Stokes spectra over an extended Q range at 2, 40, and 120 K, hence covering both the magnetic monoclinic and the paramagnetic tetragonal phases, whereas cold neutrons allowed the measurement of high-resolution anti-Stokes spectra at 140, 220, and 300 K, thus covering the tetragonal phase. Our results evidence a spin-phonon coupling behavior towards the observed noticeable temperature-dependent change of the Stokes spectra across the transition temperatures. On the other hand, the anti-Stokes spectra reveal a pronounced hardening of the low-energy, acoustic region of the phonon spectrum upon heating, indicating a strong anharmonicity and a subtle dependence of phonons on structural evolution within the tetragonal phase. Experimental results are accompanied by ab initio calculations of phonon spectra of the tetragonal stoichiometric phase for a comparison with the high-resolution anti-Stokes spectra. Calculations included different density functional methods. Spin polarization and van der Waals interaction were either considered or neglected, individually or concomitantly, in order to study their respective effect on lattice dynamics description. Our results suggest that including van der Waals interaction has only a slight effect on phonon dynamics; however, phonon spectra are better described when spin polarization is included in a cooperative way with van der Waals interactions.
Source-reported materials — not catalogue approval
| Formula | Reported Tc (K) | Pressure (GPa) | Type |
|---|---|---|---|
| Fe1+xTe Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | — | Pressure not reported | unknown |
| FeSe Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | 50 | Pressure not reported | onset |
| FeSe Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | 100 | Pressure not reported | onset |
| Fe1+xTe Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | 13 | Pressure not reported | unknown |
Similar papers
Superconductivity and phonon self-energy effects in Fe1+yTe0.6Se0.4
similarity 0.94S.-F. Wu et al.
Source status unknown — claims are unverified
Probing the direct factor for superconductivity in FeSe-Based Superconductors by Raman Scattering
similarity 0.94Anmin Zhang et al.
Source status unknown — claims are unverified
Electronic structure of a Bi2Te3/FeTe heterostructure: Implications for unconventional superconductivity
similarity 0.94Kenta Owada et al.
Source status unknown — claims are unverified
Elucidating the magnetic and superconducting phases in the alkali metal intercalated iron chalcogenides
similarity 0.94Meng Wang et al.
Source status unknown — claims are unverified
Density of phonon states in superconducting FeSe as a function of temperature and pressure
similarity 0.94V. Ksenofontov et al.
Source status unknown — claims are unverified
Distinct Electronic Origins of Superconductivity and Nematicity in FeSe
similarity 0.94Xueying Ma et al.
Source status unknown — claims are unverified