Technological advances allow an increasing number of facilities around the world to install high-power multi-terawatt and petawatt lasers. These high-power lasers can be focused to high-intensities greater than 10^17 W cm^-2 onto target materials to study matter at higher pressures and temperatures. The interaction of a high-intensity laser with matter in vacuum creates a plasma layer on the surface of the target. Additional interactions between the remainder of the laser pulse and the plasma can accelerate electrons in the plasma up to tens and hundreds of MeV in energy. These “hot” electrons escape from the plasma and interact with the target material and the target vacuum chamber walls and generated bremsstrahlung photons, which can pose...
Emission of gamma rays by the processes of bremsstrahlung and inverse Compton scattering (CS) from i...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
Previous experimental and numerical results have shown that in multi-MeV Bremsstrahlung x-ray source...
In the last decade an evolution of experimental relativistic laser-plasma physics has led to highly ...
In the last decade an evolution of experimental relativistic laser-plasma physics has led to highly ...
In current experiments at the high-power laser facility at the Lund Laser Centre, electrons accelera...
In the last decade an evolution of experimental relativistic laser-plasma physics has led to highly ...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
Purpose: To evaluate the dose distribution of a 120-MeV laser-plasma accelerated electron beam which...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
Today's most intense light fields that can be produced in a laboratory are generated within the focu...
The focus of this work is the study of Bremsstrahlung emission happening when a relativistic electro...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
Emission of gamma rays by the processes of bremsstrahlung and inverse Compton scattering (CS) from i...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
Previous experimental and numerical results have shown that in multi-MeV Bremsstrahlung x-ray source...
In the last decade an evolution of experimental relativistic laser-plasma physics has led to highly ...
In the last decade an evolution of experimental relativistic laser-plasma physics has led to highly ...
In current experiments at the high-power laser facility at the Lund Laser Centre, electrons accelera...
In the last decade an evolution of experimental relativistic laser-plasma physics has led to highly ...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
Purpose: To evaluate the dose distribution of a 120-MeV laser-plasma accelerated electron beam which...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
Today's most intense light fields that can be produced in a laboratory are generated within the focu...
The focus of this work is the study of Bremsstrahlung emission happening when a relativistic electro...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
International audienceDuring the interaction of an intense picosecond laser pulse with a plasma crea...
Emission of gamma rays by the processes of bremsstrahlung and inverse Compton scattering (CS) from i...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
Previous experimental and numerical results have shown that in multi-MeV Bremsstrahlung x-ray source...