Recent advances in high-intensity laser-produced plasmas have demonstrated their potential as compact charge particle accelerators. Unlike conventional accelerators, transient quasi-static charge separation acceleration fields in laser produced plasmas are highly localized and orders of magnitude larger. Manipulating these ion accelerators, to convert the fast ions to neutral atoms with little change in momentum, transform these to a bright source of MeV atoms. The emittance of the neutral atom beam would be similar to that expected for an ion beam. Since intense laser-produced plasmas have been demonstrated to produce high-brightness-low-emittance beams, it is possible to envisage generation of high-flux, low-emittance, high energy neutral...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
Plasma wakefield accelerators are capable of sustaining gigavolt-per-centimeter accelerating fields,...
Recent advances in high-intensity laser-produced plasmas have demonstrated their potential as compac...
International audienceLaser-driven ion acceleration by intense, ultra-short, laser pulse has receive...
When an intense laser pulse interacts with a solid surface, ions get accelerated in the laser-plasma...
Acceleration of particles by intense laser-plasma interactions represents a rapidly evolving field o...
International audienceThe recent and continuous development of powerful laser systems has permitted ...
Laser ion sources offer the possibility to get ion beam utilizable to improve particle accelerators....
The acceleration of electrons in laser plasma interaction has been observed since the seventies, whe...
Particle acceleration based on high intensity laser systems (a process known as laser-plasma acceler...
Laser manipulation techniques for neutral atoms can be used to produce atomic beams which are more i...
Since laser plasma accelerators have a great potential to realize higher accelerating electric field...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
Plasma wakefield accelerators are capable of sustaining gigavolt-per-centimeter accelerating fields,...
Recent advances in high-intensity laser-produced plasmas have demonstrated their potential as compac...
International audienceLaser-driven ion acceleration by intense, ultra-short, laser pulse has receive...
When an intense laser pulse interacts with a solid surface, ions get accelerated in the laser-plasma...
Acceleration of particles by intense laser-plasma interactions represents a rapidly evolving field o...
International audienceThe recent and continuous development of powerful laser systems has permitted ...
Laser ion sources offer the possibility to get ion beam utilizable to improve particle accelerators....
The acceleration of electrons in laser plasma interaction has been observed since the seventies, whe...
Particle acceleration based on high intensity laser systems (a process known as laser-plasma acceler...
Laser manipulation techniques for neutral atoms can be used to produce atomic beams which are more i...
Since laser plasma accelerators have a great potential to realize higher accelerating electric field...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
Plasma wakefield accelerators are capable of sustaining gigavolt-per-centimeter accelerating fields,...