We present design considerations for the use of laser-plasma accelerators for mimicking space radiation and testing space-grade electronics. This novel application takes advantage of the inherent ability of laser-plasma accelerators to produce particle beams with exponential energy distribution, which is a characteristic shared with the hazardous relativistic electron flux present in the radiation belts of planets such as Earth, Saturn and Jupiter. Fundamental issues regarding laser-plasma interaction parameters, beam propagation, flux development, and experimental setup are discussed
To date active research on laser-driven plasma-based accelerators have achieved great progress on pr...
Design considerations for a next-generation electron-positron linear collider based on laser-plasma-...
Compared to conventional particle accelerators, plasmas can sustain accelerating fields that are tho...
We present design considerations for the use of laser-plasma accelerators for mimicking space radiat...
The potential of laser-plasma-accelerators for space radiation testing of electronics is explored. B...
Space radiation is a great danger to electronics and astronauts onboard space vessels. The spectral ...
Space radiation is a great danger to electronics and astronauts onboard space vessels. The spectral ...
International audienceThe concepts of the laser-plasma based accelerator and injector are discussed ...
The concepts of laser-plasma based accelerator and injector are discussed here. Recent tests done at...
International audienceThe recent and continuous development of powerful laser systems has permitted ...
Laser-plasma-accelerators are relatively new accelerator devices which are characterized by being ve...
Plasma accelerators may be driven by the ponderomotive force of an intense laser or the space-charge...
Laser-driven plasma accelerators provide acceleration gradients that are three orders of magnitude g...
Guiding of relativistically intense laser beams in preformed plasma channels is discussed for devel...
International audienceLaser-plasma accelerators deliver high-charge quasi-monoenergetic electron bea...
To date active research on laser-driven plasma-based accelerators have achieved great progress on pr...
Design considerations for a next-generation electron-positron linear collider based on laser-plasma-...
Compared to conventional particle accelerators, plasmas can sustain accelerating fields that are tho...
We present design considerations for the use of laser-plasma accelerators for mimicking space radiat...
The potential of laser-plasma-accelerators for space radiation testing of electronics is explored. B...
Space radiation is a great danger to electronics and astronauts onboard space vessels. The spectral ...
Space radiation is a great danger to electronics and astronauts onboard space vessels. The spectral ...
International audienceThe concepts of the laser-plasma based accelerator and injector are discussed ...
The concepts of laser-plasma based accelerator and injector are discussed here. Recent tests done at...
International audienceThe recent and continuous development of powerful laser systems has permitted ...
Laser-plasma-accelerators are relatively new accelerator devices which are characterized by being ve...
Plasma accelerators may be driven by the ponderomotive force of an intense laser or the space-charge...
Laser-driven plasma accelerators provide acceleration gradients that are three orders of magnitude g...
Guiding of relativistically intense laser beams in preformed plasma channels is discussed for devel...
International audienceLaser-plasma accelerators deliver high-charge quasi-monoenergetic electron bea...
To date active research on laser-driven plasma-based accelerators have achieved great progress on pr...
Design considerations for a next-generation electron-positron linear collider based on laser-plasma-...
Compared to conventional particle accelerators, plasmas can sustain accelerating fields that are tho...