A beam of MeV protons, accelerated by ultraintense laser-pulse interactions with a thin target foil, is used to investigate nuclear reactions of interest for spallation physics. The laser-generated proton beam is shown (protons were measured) to have a broad energy distribution, which closely resembles the expected energy spectrum of evaporative protons (below 50 MeV) produced in GeV-proton-induced spallation reactions. The protons are used to quantify the distribution of residual radioisotopes produced in a representative spallation target (Pb), and the results are compared with calculated predictions based on spectra modeled with nuclear Monte Carlo codes. Laser-plasma particle accelerators are shown to provide data relevant to the design...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
Nuclear activation has been observed in materials exposed to the ablated plasma generated from high ...
In the last decade or so, an evolution in experimental relativistic laser-plasma physics has led to ...
A beam of MeV protons, accelerated by ultraintense laser-pulse interactions with a thin target foil,...
The on-going developments in laser acceleration of protons and light ions, as well as the production...
The purpose of this study is measuring energy of laser-accelerated protons from the hydrogen cluster...
With the very rapid development of high intensity lasers, very high protons fluxes (at least 10$^{13...
Les lasers de puissance permettent depuis une dizaine d'années de produire des faisceaux de particul...
Particle acceleration from laser-plasma interactions has been a vibrant area of research since the d...
The field of forward laser-accelerated ions and protons is relatively new, existing only since 2000....
The energy spectra of protons generated by ultra-intense (1020 W cm−2) laser interactions with a pre...
The framework of this thesis is the investigation of the generation of proton beams using high-inten...
The development of high intensity lasers has opened up new opportunities for nuclear physics studies...
Nuclear emulsions are applied to identify multi-MeV protons accelerated by an intense PW-class laser...
By suppressing the background noise signals through the use of desensitized development conditions, ...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
Nuclear activation has been observed in materials exposed to the ablated plasma generated from high ...
In the last decade or so, an evolution in experimental relativistic laser-plasma physics has led to ...
A beam of MeV protons, accelerated by ultraintense laser-pulse interactions with a thin target foil,...
The on-going developments in laser acceleration of protons and light ions, as well as the production...
The purpose of this study is measuring energy of laser-accelerated protons from the hydrogen cluster...
With the very rapid development of high intensity lasers, very high protons fluxes (at least 10$^{13...
Les lasers de puissance permettent depuis une dizaine d'années de produire des faisceaux de particul...
Particle acceleration from laser-plasma interactions has been a vibrant area of research since the d...
The field of forward laser-accelerated ions and protons is relatively new, existing only since 2000....
The energy spectra of protons generated by ultra-intense (1020 W cm−2) laser interactions with a pre...
The framework of this thesis is the investigation of the generation of proton beams using high-inten...
The development of high intensity lasers has opened up new opportunities for nuclear physics studies...
Nuclear emulsions are applied to identify multi-MeV protons accelerated by an intense PW-class laser...
By suppressing the background noise signals through the use of desensitized development conditions, ...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
Nuclear activation has been observed in materials exposed to the ablated plasma generated from high ...
In the last decade or so, an evolution in experimental relativistic laser-plasma physics has led to ...