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Article Dans Une Revue Physical Review Letters Année : 2008

Charge and Orbital Correlations at and above the Verwey Phase Transition in Magnetite

Résumé

The subtle interplay among electronic degrees of freedom (charge and orbital orderings), spin and lattice distortion that conspire at the Verwey transition in magnetite (Fe3O4) is still a matter of controversy. Here, we provide compelling evidence that these electronic orderings are manifested as a continuous phase transition at the temperature where a spin reorientation takes place at around 130 K, i.e., well above T-V approximate to 121 K. The Verwey transition seems to leave the orbital ordering unaffected whereas the charge ordering development appears to be quenched at this temperature and the temperature dependence below T-V is controlled by the lattice distortions. Finally, we show that the orbital ordering does not reach true long range (disorder), and the correlation length along the c-direction is limited to 100 A.
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Dates et versions

hal-00365375 , version 1 (03-03-2009)

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José-Emilio Lorenzo, C. Mazzoli, Nicolas Jaouen, C. Detlefs, Danny Mannix, et al.. Charge and Orbital Correlations at and above the Verwey Phase Transition in Magnetite. Physical Review Letters, 2008, 101 (22), pp.226401. ⟨10.1103/PhysRevLett.101.226401⟩. ⟨hal-00365375⟩
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