One of the main challenges in ultrafast material science is to trigger phase transitions with short pulses of light. Here we show how strain waves, launched by electronic and structural precursor phenomena, determine a coherent macroscopic transformation pathway for the semiconducting-to-metal transition in bistable Ti3O5 nanocrystals. Employing femtosecond powder X-ray diffraction, we measure the lattice deformation in the phase transition as a function of time. We monitor the early intra-cell distortion around the light absorbing metal dimer and the long range deformations governed by acoustic waves propagating from the laser-exposed Ti3O5 surface. We developed a simplified elastic model demonstrating that picosecond switching in nanocrys...
Visualizing the dynamical response of material heterointerfaces is increasingly important for the de...
Key insights into the behavior of materials can be gained by observing their structure as they under...
Understanding physicochemical processes at their fundamental timescale is crucial for design and app...
International audienceOne of the main challenges in ultrafast material science is to trigger phase t...
Ultrafast physics opens new avenues for directing materials to different functional macroscopic stat...
COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL DE NÍVEL SUPERIOR - CAPESNanoparticles of Ti3O5 have been ...
This research aims at experimentally monitoring nonlinear generation and propagation of picosecond c...
International audienceWe have performed single-shot time-resolved reflectivity measurements of the p...
The general class of martensitic phase transformations occurs by a rapid lattice-distortive mechanis...
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Coherent phonons (CPs) generated by laser pulses on the femtosecond scale have been proposed as a me...
Key insights into the behavior of materials can be gained by observing their structure as they under...
Fast phenomena occurring after laser excitation were studied using time-resolved X-ray diffraction (...
When light is used to study structures, the wavelength limits the size of the details that can be re...
There is a fundamental interest in studying photoinduced dynamics in nanoparticles and nanostructure...
Visualizing the dynamical response of material heterointerfaces is increasingly important for the de...
Key insights into the behavior of materials can be gained by observing their structure as they under...
Understanding physicochemical processes at their fundamental timescale is crucial for design and app...
International audienceOne of the main challenges in ultrafast material science is to trigger phase t...
Ultrafast physics opens new avenues for directing materials to different functional macroscopic stat...
COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL DE NÍVEL SUPERIOR - CAPESNanoparticles of Ti3O5 have been ...
This research aims at experimentally monitoring nonlinear generation and propagation of picosecond c...
International audienceWe have performed single-shot time-resolved reflectivity measurements of the p...
The general class of martensitic phase transformations occurs by a rapid lattice-distortive mechanis...
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Coherent phonons (CPs) generated by laser pulses on the femtosecond scale have been proposed as a me...
Key insights into the behavior of materials can be gained by observing their structure as they under...
Fast phenomena occurring after laser excitation were studied using time-resolved X-ray diffraction (...
When light is used to study structures, the wavelength limits the size of the details that can be re...
There is a fundamental interest in studying photoinduced dynamics in nanoparticles and nanostructure...
Visualizing the dynamical response of material heterointerfaces is increasingly important for the de...
Key insights into the behavior of materials can be gained by observing their structure as they under...
Understanding physicochemical processes at their fundamental timescale is crucial for design and app...