Please use this identifier to cite or link to this item: https://physrep.ff.bg.ac.rs/handle/123456789/700
Title: Phonon anomalies in FeS
Authors: Baum, A.
Milosavljević, A.
Lazarević, N.
Radonjić, M. M.
Nikolić, B.
Mitschek, M.
Maranloo, Z. Inanloo
Šćepanović, M.
Grujić-Brojčin, M.
Stojilović, N.
Opel, M.
Wang, Aifeng
Petrovic, C.
Popović, Z. V.
Hackl, R.
Issue Date: 12-Feb-2018
Journal: Physical Review B
Abstract: 
We present results from light scattering experiments on tetragonal FeS with the focus placed on lattice dynamics. We identify the Raman active A1g and B1g phonon modes, a second order scattering process involving two acoustic phonons, and contributions from potentially defect-induced scattering. The temperature dependence between 300 and 20 K of all observed phonon energies is governed by the lattice contraction. Below 20 K the phonon energies increase by 0.5-1 cm-1, thus indicating putative short range magnetic order. Along with the experiments we performed lattice-dynamical simulations and a symmetry analysis for the phonons and potential overtones and find good agreement with the experiments. In particular, we argue that the two-phonon excitation observed in a gap between the optical branches becomes observable due to significant electron-phonon interaction.
URI: https://physrep.ff.bg.ac.rs/handle/123456789/700
ISSN: 2469-9950
DOI: 10.1103/PhysRevB.97.054306
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