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Anharmonicity due to electron-phonon coupling in magnetite

We present the results of inelastic x-ray scattering for magnetite and analyze the energies and widths of the phonon modes with different symmetries in a broad range of temperature 125 < T < 293 K. The phonon modes with X(4) and Δ(5) symmetries broaden in a nonlinear way with decreasing T when...

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Bibliographic Details
Published in:Physical review letters 2013-05, Vol.110 (20), p.207204-207204, Article 207204
Main Authors: Hoesch, Moritz, Piekarz, Przemysław, Bosak, Alexey, Le Tacon, Mathieu, Krisch, Michael, Kozłowski, Andrzej, Oleś, Andrzej M, Parlinski, Krzysztof
Format: Article
Language:English
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Summary:We present the results of inelastic x-ray scattering for magnetite and analyze the energies and widths of the phonon modes with different symmetries in a broad range of temperature 125 < T < 293 K. The phonon modes with X(4) and Δ(5) symmetries broaden in a nonlinear way with decreasing T when the Verwey transition is approached. It is found that the maxima of phonon widths occur away from high-symmetry points, which suggests the incommensurate character of critical fluctuations. Strong phonon anharmonicity induced by electron-phonon coupling is discovered by a combination of these experimental results with ab initio calculations which take into account local Coulomb interactions at Fe ions. It (i) explains observed anomalous phonon broadening and (ii) demonstrates that the Verwey transition is a cooperative phenomenon which involves a wide spectrum of phonons coupled to the electron charge fluctuations condensing in the low-symmetry phase.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.110.207204