The acceleration of intense proton and ion beams by ultra-intense lasers has matured to a point where applications in basic research and technology are being developed. Crucial for harvesting the unmatched beam parameters driven by the relativistic electron sheath is the precise control of the beam. In this paper we report on recent experiments using the PHELIX laser at GSI, the VULCAN laser at RAL and the TRIDENT laser at LANL to control and use laser accelerated proton beams for applications in high energy density research. We demonstrate efficient collimation of the proton beam using high field pulsed solenoid magnets, a prerequisite to capture and transport the beam for applications. Furthermore, we report on two campaigns to use intens...
The thesis at hand addresses design, characterization and experimental testing of pulsed high-field ...
Particle acceleration from laser-plasma interactions has been a vibrant area of research since the d...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
The acceleration of intense proton and ion beams by ultra-intense lasers has matured to a point wher...
Intense proton beams are appealing research subjects in high energy density physics and fast ignitio...
The framework of this thesis is the investigation of the generation of proton beams using high-inten...
This thesis describes experimental studies of laser-driven particle acceleration. With the focused i...
This thesis presents measurements of high energy ion beams accelerated from high intensity laser int...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
Over the last several years, the Target Normal Sheath Acceleration (TNSA) mechanism in solid density...
textIn recent, high intensity laser pulse interaction with solid density matter has been studied in ...
Our team has provided the first observations of energetic ion beam production from the front and rea...
The thesis at hand addresses design, characterization and experimental testing of pulsed high-field ...
Particle acceleration from laser-plasma interactions has been a vibrant area of research since the d...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
The acceleration of intense proton and ion beams by ultra-intense lasers has matured to a point wher...
Intense proton beams are appealing research subjects in high energy density physics and fast ignitio...
The framework of this thesis is the investigation of the generation of proton beams using high-inten...
This thesis describes experimental studies of laser-driven particle acceleration. With the focused i...
This thesis presents measurements of high energy ion beams accelerated from high intensity laser int...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
Over the last several years, the Target Normal Sheath Acceleration (TNSA) mechanism in solid density...
textIn recent, high intensity laser pulse interaction with solid density matter has been studied in ...
Our team has provided the first observations of energetic ion beam production from the front and rea...
The thesis at hand addresses design, characterization and experimental testing of pulsed high-field ...
Particle acceleration from laser-plasma interactions has been a vibrant area of research since the d...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...