We have investigated proton acceleration in the forward direction from a near-critical density hydrogen gas jet target irradiated by a high intensity (1018 W/cm2), short-pulse (5 ps) laser with wavelength of 1.054 μm. We observed the signature of the Collisionless Shock Acceleration mechanism, namely quasi-monoenergetic proton beams with small divergence in addition to the more commonly observed electron-sheath driven proton acceleration. The proton energies we obtained were modest (~MeV), but prospects for improvement are offered through further tailoring the gas jet density profile. Also, we observed that this mechanism is very robust in producing those beams and thus can be considered as a future candidate in laser-driven ion sources dri...
We report on the successful operation of a newly developed cryogenic jet target at high intensity\ud...
Over the last several years, the Target Normal Sheath Acceleration (TNSA) mechanism in solid density...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
We have investigated proton acceleration in the forward direction from a near-critical density hydro...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
Recent breakthroughs in short pulse laser technology resulted in (i) generation of ultra-high intens...
AbstractIon acceleration driven by high intensity laser pulses is attracting an impressive and stead...
International audienceExperimental measurements of backward accelerated protons are presented. The b...
textThe generation of high current multi-MeV protons and ions by irradiation of short pulse high int...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
We present a novel, cascaded acceleration scheme for the generation of spectrally controlled ion bea...
Modern particle accelerators are a key component of today’s research landscape and indispensable in ...
We report on the successful operation of a newly developed cryogenic jet target at high intensity\ud...
Over the last several years, the Target Normal Sheath Acceleration (TNSA) mechanism in solid density...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...
We have investigated proton acceleration in the forward direction from a near-critical density hydro...
Bright proton beams with maximum energies of up to 30MeV have been observed in an experiment investi...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
Recent breakthroughs in short pulse laser technology resulted in (i) generation of ultra-high intens...
AbstractIon acceleration driven by high intensity laser pulses is attracting an impressive and stead...
International audienceExperimental measurements of backward accelerated protons are presented. The b...
textThe generation of high current multi-MeV protons and ions by irradiation of short pulse high int...
Often, the interpretation of experiments concerning the manipulation of the energy distribution of l...
We present a novel, cascaded acceleration scheme for the generation of spectrally controlled ion bea...
Modern particle accelerators are a key component of today’s research landscape and indispensable in ...
We report on the successful operation of a newly developed cryogenic jet target at high intensity\ud...
Over the last several years, the Target Normal Sheath Acceleration (TNSA) mechanism in solid density...
International audienceIt was recently shown that a promising way to accelerate protons in the forwar...