Ultrafast physics opens new avenues for directing materials to different functional macroscopic states on non-thermal dynamical pathways. In any phase transition involving volume and/or ferroelastic deformation, an often overlooked mechanism emerges whereby photoinduced elastic waves drive the transition. However, a comprehensive physical picture of transformation dynamics which includes acoustic scale propagation remained elusive. Here we show that such a strain wave mechanism drives the ultrafast insulator-to-metal phase transition (IMT) in the V2O3 Mott material. We discuss the underlying physics based on time-resolved optical reflectivity and X-ray diffraction probing granular thin films. We evidence the role of strain wave mechanisms i...
International audienceThe ultrafast response of the prototype Mott-Hubbard system (V1−xCrx)2O3 was s...
The ultrafast response of the prototype Mott-Hubbard system (V1−xCrx)2O3 was systematically studied ...
Vanadium oxides are a prototypical family of highly correlated oxides. In his dissertation, I presen...
One of the main challenges in ultrafast material science is to trigger phase transitions with short ...
Phase transitions are key in determining and controlling the quantum properties of correlated materi...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
International audienceUnveiling the physics that governs the intertwining between the nanoscale self...
International audienceOne of the main challenges in ultrafast material science is to trigger phase t...
International audienceThe study of photoexcited strongly correlated materials is attracting growing ...
Understanding physicochemical processes at their fundamental timescale is crucial for design and app...
International audienceTriggering new stable macroscopic orders in materials by ultrafast optical or ...
International audienceThe ultrafast response of the prototype Mott-Hubbard system (V1−xCrx)2O3 was s...
The ultrafast response of the prototype Mott-Hubbard system (V1−xCrx)2O3 was systematically studied ...
Vanadium oxides are a prototypical family of highly correlated oxides. In his dissertation, I presen...
One of the main challenges in ultrafast material science is to trigger phase transitions with short ...
Phase transitions are key in determining and controlling the quantum properties of correlated materi...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
International audienceUnveiling the physics that governs the intertwining between the nanoscale self...
International audienceOne of the main challenges in ultrafast material science is to trigger phase t...
International audienceThe study of photoexcited strongly correlated materials is attracting growing ...
Understanding physicochemical processes at their fundamental timescale is crucial for design and app...
International audienceTriggering new stable macroscopic orders in materials by ultrafast optical or ...
International audienceThe ultrafast response of the prototype Mott-Hubbard system (V1−xCrx)2O3 was s...
The ultrafast response of the prototype Mott-Hubbard system (V1−xCrx)2O3 was systematically studied ...
Vanadium oxides are a prototypical family of highly correlated oxides. In his dissertation, I presen...