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      Ultrafast evolution and transient phases of a prototype out-of-equilibrium Mott–Hubbard material

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          Abstract

          The study of photoexcited strongly correlated materials is attracting growing interest since their rich phase diagram often translates into an equally rich out-of-equilibrium behaviour. With femtosecond optical pulses, electronic and lattice degrees of freedom can be transiently decoupled, giving the opportunity of stabilizing new states inaccessible by quasi-adiabatic pathways. Here we show that the prototype Mott–Hubbard material V 2O 3 presents a transient non-thermal phase developing immediately after ultrafast photoexcitation and lasting few picoseconds. For both the insulating and the metallic phase, the formation of the transient configuration is triggered by the excitation of electrons into the bonding a 1 g orbital, and is then stabilized by a lattice distortion characterized by a hardening of the A 1 g coherent phonon, in stark contrast with the softening observed upon heating. Our results show the importance of selective electron–lattice interplay for the ultrafast control of material parameters, and are relevant for the optical manipulation of strongly correlated systems.

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          Most cited references45

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          Metal-insulator transitions

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            Femtosecond Structural Dynamics in\({\mathrm{VO}}_{2}\)during an Ultrafast Solid-Solid Phase Transition

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              Time Evolution of the Electronic Structure of1T−TaS2through the Insulator-Metal Transition

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                Author and article information

                Contributors
                Journal
                Nature Communications
                Nat Commun
                Springer Science and Business Media LLC
                2041-1723
                April 28 2017
                January 09 2017
                April 28 2017
                : 8
                : 1
                Article
                10.1038/ncomms13917
                7d1e7dd6-4f6f-46e4-9272-42a09d80ec05
                © 2017

                https://creativecommons.org/licenses/by/4.0

                https://creativecommons.org/licenses/by/4.0

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