New material phases formed under non-equilibrium conditions at pressures above 100 GPa and temperatures exceeding 104K, the conditions of the warm dense matter (WDM), have become accessible using micro-explosions triggered by ultra-short sub-1 ps pulses tightly focused into micro-volume with cross sections comparable with the wavelength of light. Laser-induced micro-explosions convert a material in a focal volume into a non-equilibrium disordered plasma state confined inside the bulk of pristine crystal. Ultra-high quenching rates overcome kinetic barriers to the formation of new metastable high pressure phases, which are preserved in the surrounding pristine crystal for following recovery and exploitation. Direct laser writing was used to ...
We present here the experimental and theoretical studies of a single femtosecond laser pulse interac...
International audienceUltrafast laser microexplosions in bulk material create extreme conditions at ...
International audienceFemtosecond pulses provide an extreme degree of confinement of light matter-in...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material interact with mat...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material produce plasma in...
Microexplosions triggered by single femtosecond laser pulses tightly focussed inside a crystalline o...
Microexplosions triggered by single femtosecond laser pulses tightly focussed inside a crystalline o...
Femtosecond (fs) laser pulses focused and confined inside the bulk of a material can deposit a volum...
We describe synthesis of a new super-dense phase of aluminum under extreme pressure and temperature ...
We report the experimental evidence for creation of Warm Dense Matter (WDM) in ultrafast laser-induc...
Extremely high pressure (~10 Tpa) and temperature (5×105 K) have been produced using a single laser ...
Extremely high pressures (∼10TPa) and temperatures (5×105K) have been produced using a single laser ...
Ordinary materials can transform into novel phases at extraordinary high pressure and temperature. T...
Confined microexplosion produced by a tightly focused fs-laser pulse inside transparent material pro...
We present here the experimental and theoretical studies of a single femtosecond laser pulse interac...
We present here the experimental and theoretical studies of a single femtosecond laser pulse interac...
International audienceUltrafast laser microexplosions in bulk material create extreme conditions at ...
International audienceFemtosecond pulses provide an extreme degree of confinement of light matter-in...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material interact with mat...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material produce plasma in...
Microexplosions triggered by single femtosecond laser pulses tightly focussed inside a crystalline o...
Microexplosions triggered by single femtosecond laser pulses tightly focussed inside a crystalline o...
Femtosecond (fs) laser pulses focused and confined inside the bulk of a material can deposit a volum...
We describe synthesis of a new super-dense phase of aluminum under extreme pressure and temperature ...
We report the experimental evidence for creation of Warm Dense Matter (WDM) in ultrafast laser-induc...
Extremely high pressure (~10 Tpa) and temperature (5×105 K) have been produced using a single laser ...
Extremely high pressures (∼10TPa) and temperatures (5×105K) have been produced using a single laser ...
Ordinary materials can transform into novel phases at extraordinary high pressure and temperature. T...
Confined microexplosion produced by a tightly focused fs-laser pulse inside transparent material pro...
We present here the experimental and theoretical studies of a single femtosecond laser pulse interac...
We present here the experimental and theoretical studies of a single femtosecond laser pulse interac...
International audienceUltrafast laser microexplosions in bulk material create extreme conditions at ...
International audienceFemtosecond pulses provide an extreme degree of confinement of light matter-in...