We show that generation of strong magnetic field filaments due to Weibel instability accompanies the hole-boring ion acceleration by a circularly polarised laser pulse. The magnetic field confines energetic protons accelerated from hole boring in high density collimated jets. A part of energetic protons are reaccelerated by the electric field and focused by the magnetic field generated from the jets. As a result, highly collimated proton jets with high cutoff energy can be produced
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
International audienceRecently, a filamentation instability was observed when a laser-generated pair...
Many astrophysical systems are effectively “collisionless,” that is, the mean free path for collisio...
We observe experimentally periodic proton beam filamentation in laser-produced dense plasma using mu...
The development of current instabilities behind the front of a cylindrically expanding plasma has be...
Proton acceleration by ultra-intense laser pulse irradiating a target with cross-section smaller tha...
In the laser foil-plasma interaction the effects of Weibel-like instability have been explored. The ...
The propagation of ultraintense laser pulses through matter is connected with the generation of stro...
International audienceWe report experimental evidence that multi-MeV protons accelerated in relativi...
We discuss magnetic field generation by the proton Weibel instability in relativistic shocks, a situ...
This thesis presents experimental, computational, and theoretical work studying shock formation and ...
It is shown for the first time that the spatial and temporal distribution of laser accelerated proto...
By modelling the expansion of a cloud of electrons and positrons with the temperature of 400 keV whi...
WOS:000341271100005 (Nº de Acesso Web of Science)A new magnetic field generation mechanism in electr...
A scheme for producing collimated protons from laser interactions with a diamond-like-carbon + pinho...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
International audienceRecently, a filamentation instability was observed when a laser-generated pair...
Many astrophysical systems are effectively “collisionless,” that is, the mean free path for collisio...
We observe experimentally periodic proton beam filamentation in laser-produced dense plasma using mu...
The development of current instabilities behind the front of a cylindrically expanding plasma has be...
Proton acceleration by ultra-intense laser pulse irradiating a target with cross-section smaller tha...
In the laser foil-plasma interaction the effects of Weibel-like instability have been explored. The ...
The propagation of ultraintense laser pulses through matter is connected with the generation of stro...
International audienceWe report experimental evidence that multi-MeV protons accelerated in relativi...
We discuss magnetic field generation by the proton Weibel instability in relativistic shocks, a situ...
This thesis presents experimental, computational, and theoretical work studying shock formation and ...
It is shown for the first time that the spatial and temporal distribution of laser accelerated proto...
By modelling the expansion of a cloud of electrons and positrons with the temperature of 400 keV whi...
WOS:000341271100005 (Nº de Acesso Web of Science)A new magnetic field generation mechanism in electr...
A scheme for producing collimated protons from laser interactions with a diamond-like-carbon + pinho...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
International audienceRecently, a filamentation instability was observed when a laser-generated pair...
Many astrophysical systems are effectively “collisionless,” that is, the mean free path for collisio...