Dry-wall laser inertial fusion (LIF) chambers will have to withstand strong bursts of fast charged particles which will deposit tens of kJ m−2 and implant more than 1018 particles m−2 in a few microseconds at a repetition rate of some Hz. Large chamber dimensions and resistant plasma-facing materials must be combined to guarantee the chamber performance as long as possible under the expected threats: heating, fatigue, cracking, formation of defects, retention of light species, swelling and erosion. Current and novel radiation resistant materials for the first wall need to be validated under realistic conditions. However, at present there is a lack of facilities which can reproduce such ion environments. This contribution proposes the use of...
The research described in this thesis is done in the frame of the development of nuclear fusion as a...
"Investigation of the high-Z laser-produced plasma with the use of ion diagnostics for optimiza...
To harness fusion energy is one of today's greatest technological challenges, and one well worth pur...
Dry-wall laser inertial fusion (LIF) chambers will have to withstand strong bursts of fast charged p...
The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within...
The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within...
The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within...
Justification of the need and demand of experimental facilities to test and validate materials for...
The acceleration of ions by ultra-intense lasers has attracted great attention due to the unique pro...
The acceleration of ions by ultra-intense lasers has attracted great attention due to the unique pro...
The acceleration of ions by ultra-intense lasers has attracted great attention due to the unique pro...
Research into laser-driven inertial confinement fusion is now entering a critical juncture with the ...
The concept of the fast ignitor for laser fusion has led to some modifications in applying petawatt-...
High power and particle deposition on target materials are encountered in many applications includin...
In the interaction of ultra-intense laser fields with matter, the target is rapidly ionized and a pl...
The research described in this thesis is done in the frame of the development of nuclear fusion as a...
"Investigation of the high-Z laser-produced plasma with the use of ion diagnostics for optimiza...
To harness fusion energy is one of today's greatest technological challenges, and one well worth pur...
Dry-wall laser inertial fusion (LIF) chambers will have to withstand strong bursts of fast charged p...
The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within...
The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within...
The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within...
Justification of the need and demand of experimental facilities to test and validate materials for...
The acceleration of ions by ultra-intense lasers has attracted great attention due to the unique pro...
The acceleration of ions by ultra-intense lasers has attracted great attention due to the unique pro...
The acceleration of ions by ultra-intense lasers has attracted great attention due to the unique pro...
Research into laser-driven inertial confinement fusion is now entering a critical juncture with the ...
The concept of the fast ignitor for laser fusion has led to some modifications in applying petawatt-...
High power and particle deposition on target materials are encountered in many applications includin...
In the interaction of ultra-intense laser fields with matter, the target is rapidly ionized and a pl...
The research described in this thesis is done in the frame of the development of nuclear fusion as a...
"Investigation of the high-Z laser-produced plasma with the use of ion diagnostics for optimiza...
To harness fusion energy is one of today's greatest technological challenges, and one well worth pur...