We describe synthesis of a new super-dense phase of aluminum under extreme pressure and temperature conditions created by laser-induced microexplosions in sapphire. Micro explosions in sub-micrometer sized regions of sapphire were induced by tightly-focused femtosecond laser pulses with a temporal length of ~ 100 fs and an energy of ~ 100 nJ. Fast, explosive expansion of photogenerated high-density plasma created strong heating and pressure transients with peak temperature and pressure of ~ 105 K and 10 TPa, respectively. Partial decomposition of sapphire in the shock-compressed sapphire led to formation of nanocrystalline bcc-Al phase, which is different from ambient fcc-Al phase, and was permanently preserved by fast quenching. The existe...
We present here the experimental and theoretical studies of a single femtosecond laser pulse interac...
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...
We describe synthesis of a new super-dense phase of aluminum under extreme pressure and temperature ...
We discovered a new super-dense bcc-Al phase formed in microexplosion induced by a femtosecond laser...
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 ...
New material phases formed under non-equilibrium conditions at pressures above 100 GPa and temperatu...
At extreme pressures and temperatures, such as those inside planets and stars, common materials form...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material produce plasma in...
Extremely high pressures (∼10TPa) and temperatures (5×105K) have been produced using a single laser ...
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...
We report on structural characterization of void-structures created by a micro-explosion at the locu...
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...
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...
We describe synthesis of a new super-dense phase of aluminum under extreme pressure and temperature ...
We discovered a new super-dense bcc-Al phase formed in microexplosion induced by a femtosecond laser...
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 ...
New material phases formed under non-equilibrium conditions at pressures above 100 GPa and temperatu...
At extreme pressures and temperatures, such as those inside planets and stars, common materials form...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material produce plasma in...
Extremely high pressures (∼10TPa) and temperatures (5×105K) have been produced using a single laser ...
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...
We report on structural characterization of void-structures created by a micro-explosion at the locu...
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...
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...