Triggering vacuum breakdown at laser facility is expected to provide rapid electron-positron p air production for studies in laboratory astrophysics and fundamental physics. However, the density of the produced plasma may cease to increase at a relativistic critical density, when the plasma becomes opaque. Here, we identify the opportunity of breaking this limit using optimal beam configuration of petawatt-class lasers. Tightly focused laser fields allow generating plasma in a small focal volume much less than λ 3 and creating extreme plasma states in terms of density and produced currents. These states can be regarded to be a new object of nonlinear plasma physics. Using 3D QED-PIC simulations we demonstrate a possibility of reaching densi...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
4 pagesInternational audienceIt is shown that even a single e-e+ pair created by a superstrong laser...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
We present a short review of recent progress in studying QED effects within the interaction of ultra...
QED cascades are complex avalanche processes of hard photon emission and electron-positron pair crea...
In simulations of a 10PW laser striking a solid, we demonstrate the possibility of producing a pure ...
In simulations of a 10 PW laser striking a solid, we demonstrate the possibility of producing a pure...
QED cascades are complex avalanche processes of hard photon emission and electron-positron pair crea...
It is generally believed that relativistically underdense plasma is transparent for intense laser ra...
Multi-petawatt laser systems will open up a novel interaction regime mixing collective plasma and qu...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
Although, for current laser pulse energies, the weakly nonlinear regime of laser wakefield accelerat...
4 pagesInternational audienceIt is shown that even a single e-e+ pair created by a superstrong laser...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
Understanding the interplay of strong-field QED and collective plasma effects is important for expla...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
4 pagesInternational audienceIt is shown that even a single e-e+ pair created by a superstrong laser...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
We present a short review of recent progress in studying QED effects within the interaction of ultra...
QED cascades are complex avalanche processes of hard photon emission and electron-positron pair crea...
In simulations of a 10PW laser striking a solid, we demonstrate the possibility of producing a pure ...
In simulations of a 10 PW laser striking a solid, we demonstrate the possibility of producing a pure...
QED cascades are complex avalanche processes of hard photon emission and electron-positron pair crea...
It is generally believed that relativistically underdense plasma is transparent for intense laser ra...
Multi-petawatt laser systems will open up a novel interaction regime mixing collective plasma and qu...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
Although, for current laser pulse energies, the weakly nonlinear regime of laser wakefield accelerat...
4 pagesInternational audienceIt is shown that even a single e-e+ pair created by a superstrong laser...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
Understanding the interplay of strong-field QED and collective plasma effects is important for expla...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...
4 pagesInternational audienceIt is shown that even a single e-e+ pair created by a superstrong laser...
The first optical trap capable of confining relativistic electrons, with kinetic energy \u3c350 keV ...