We present here the experimental and theoretical studies of drastic transformations induced by a single powerful femtosecond laser pulse tightly focused inside a transparent dielectric, that lead to void formation in the bulk. We show that the laser pulse energy absorbed within a volume of less than 1μm3 creates the conditions with pressure and temperature range comparable to that formed by an exploding nuclear bomb. At the laser intensity above 6 × 1012 W/cm2 the material within this volume is rapidly atomized, ionized, and converted into a tiny super-hot cloud of expanding plasma. The expanding plasma generates strong shock and rarefaction waves which result in the formation of a void. Our modelling indicates that unique states of matter ...
Confined microexplosion produced by a tightly focused fs-laser pulse inside transparent material pro...
When a powerful femtosecond laser pulse was tightly focused into a bulk quartz, plasma generation oc...
We report the experimental evidence for creation of Warm Dense Matter (WDM) in ultrafast laser-induc...
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...
High intensity laser beam was tightly focussed inside bulk of dielectrics at adjustable distance fro...
Extremely high pressure (~10 Tpa) and temperature (5×105 K) have been produced using a single laser ...
We report on the nanovoid formation inside synthetic silica, viosil, by single femtosecond pulses of...
Extremely high pressures (∼10TPa) and temperatures (5×105K) have been produced using a single laser ...
International audience<span style="font-family: "Times New Roman"; font-size: medium;">B...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material interact with mat...
It was demonstrated during the past decade that an ultra-short intense laser pulse tightly-focused d...
The structural evolution from void modification to self-assembled nanogratings in fused silica is ob...
New material phases formed under non-equilibrium conditions at pressures above 100 GPa and temperatu...
International audienceWe report on a novel nonlinear optical phenomenon, coined as ciliary white lig...
Confined microexplosion produced by a tightly focused fs-laser pulse inside transparent material pro...
When a powerful femtosecond laser pulse was tightly focused into a bulk quartz, plasma generation oc...
We report the experimental evidence for creation of Warm Dense Matter (WDM) in ultrafast laser-induc...
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...
High intensity laser beam was tightly focussed inside bulk of dielectrics at adjustable distance fro...
Extremely high pressure (~10 Tpa) and temperature (5×105 K) have been produced using a single laser ...
We report on the nanovoid formation inside synthetic silica, viosil, by single femtosecond pulses of...
Extremely high pressures (∼10TPa) and temperatures (5×105K) have been produced using a single laser ...
International audience<span style="font-family: "Times New Roman"; font-size: medium;">B...
Intense ultrafast laser pulses tightly focused in the bulk of transparent material interact with mat...
It was demonstrated during the past decade that an ultra-short intense laser pulse tightly-focused d...
The structural evolution from void modification to self-assembled nanogratings in fused silica is ob...
New material phases formed under non-equilibrium conditions at pressures above 100 GPa and temperatu...
International audienceWe report on a novel nonlinear optical phenomenon, coined as ciliary white lig...
Confined microexplosion produced by a tightly focused fs-laser pulse inside transparent material pro...
When a powerful femtosecond laser pulse was tightly focused into a bulk quartz, plasma generation oc...
We report the experimental evidence for creation of Warm Dense Matter (WDM) in ultrafast laser-induc...