The rearrangement of a material's electron density during laser irradiation leads to modified nonthermal forces on the atoms that may lead to coherent atomic motions and structural phase transformation on very short time scales. We present ab initio molecular dynamics simulations of a martensitic solid-solid phase transformation in tungsten under conditions of strong electronic excitation. The transformation is ultrafast, taking just over a picosecond, and follows the tetragonal Bain path. To examine whether a solid-solid bcc-fcc phase transformation could occur during laser irradiation, we use two-temperature molecular dynamics (2T-MD) simulations with a specially developed potential dependent on the electronic temperature. Our simulations...
Understanding radiation induced ultrafast melting at material interfaces is essential in designing r...
The interactions of femtosecond lasers with gold targets were investigated with a numerical method c...
International audienceA promising route for manufacturing emergent metamaterials is the use of ultra...
The rearrangement of a material's electron density during laser irradiation leads to modified nonthe...
The redistribution of the electron density in a material during laser irradiation can have a signifi...
Irradiation of a metal by lasers or swift heavy ions causes the electrons to become excited. In the ...
<p> The time needed for metals to respond structurally to electronic excitation is usually consider...
International audienceThe possibility to trigger ultrafast solid-to-solid transitions in transition ...
It is well known that sufficiently thick metals irradiated with ultrafast laser pulses exhibit phono...
International audienceSurface structuring of amorphous and crystals materials may find interest in m...
The phase transition of tungsten (W) under high pressures was investigated with molecular dynamics s...
International audienceFemtosecond laser irradiation is able to generate a fast heating of the electr...
Intense ultrashort laser pulses can melt crystals in less than a picosecond but, in spite of over th...
The combination of high-energy pulsed-laser experiments and molecular dynamics simulations yields an...
Understanding radiation induced ultrafast melting at material interfaces is essential in designing r...
The interactions of femtosecond lasers with gold targets were investigated with a numerical method c...
International audienceA promising route for manufacturing emergent metamaterials is the use of ultra...
The rearrangement of a material's electron density during laser irradiation leads to modified nonthe...
The redistribution of the electron density in a material during laser irradiation can have a signifi...
Irradiation of a metal by lasers or swift heavy ions causes the electrons to become excited. In the ...
<p> The time needed for metals to respond structurally to electronic excitation is usually consider...
International audienceThe possibility to trigger ultrafast solid-to-solid transitions in transition ...
It is well known that sufficiently thick metals irradiated with ultrafast laser pulses exhibit phono...
International audienceSurface structuring of amorphous and crystals materials may find interest in m...
The phase transition of tungsten (W) under high pressures was investigated with molecular dynamics s...
International audienceFemtosecond laser irradiation is able to generate a fast heating of the electr...
Intense ultrashort laser pulses can melt crystals in less than a picosecond but, in spite of over th...
The combination of high-energy pulsed-laser experiments and molecular dynamics simulations yields an...
Understanding radiation induced ultrafast melting at material interfaces is essential in designing r...
The interactions of femtosecond lasers with gold targets were investigated with a numerical method c...
International audienceA promising route for manufacturing emergent metamaterials is the use of ultra...