Neutron beams, both pulsed and continuous, are a powerful tool in a wide variety of research fields and applications. Nowadays, pulsed neutron beams are produced in conventional accelerator facilities in which the time-of-fight technique is used to determine the kinetic energy of the neutrons inducing the reactions of interest. In the last decades, the development of ultra-short (femtosecond) and ultra-high power (> 1018 W/cm2) lasers has opened the door to a vast number of new applications, including the production and acceleration of pulsed ion beams. These have been recently used to produce pulsed neutron beams, reaching fluxes per pulse similar and even higher than those of conventional neutron beams, hence becoming an alternative for t...
Neutron production rates using laser-accelerated protons from high-energy single-shot laser (giant p...
Due to their unique interaction with matter, neutrons are an interesting research and diagnostic ins...
International audienceLaser-driven neutron sources could offer a promising alternative to those base...
Neutron beams, both pulsed and continuous, are a powerful tool in a wide variety of research fields ...
Neutrons are a unique tool to alter and diagnose material properties and excite nuclear reactions wi...
The production of neutron beams having short temporal duration is studied using ultraintense laser p...
AbstractThe basics of laser driven neutron sources, properties and possible applications are discuss...
Neutron production with laser-driven neutron sources was demonstrated. We outline the basics of lase...
Laser-driven neutron source (LDNS) is attracting interest for several reasons including (i) compactn...
Within the framework of this thesis the generation of neutrons using ultrashort laser pulses with mo...
Neutron production capabilities of table-top laser accelerated protons based on data from a high-ene...
Neutrons make it possible to probe matter in a unique and valuable way compared to what is possible ...
Neutron production rates using laser-accelerated protons from high-energy single-shot laser (giant p...
Due to their unique interaction with matter, neutrons are an interesting research and diagnostic ins...
International audienceLaser-driven neutron sources could offer a promising alternative to those base...
Neutron beams, both pulsed and continuous, are a powerful tool in a wide variety of research fields ...
Neutrons are a unique tool to alter and diagnose material properties and excite nuclear reactions wi...
The production of neutron beams having short temporal duration is studied using ultraintense laser p...
AbstractThe basics of laser driven neutron sources, properties and possible applications are discuss...
Neutron production with laser-driven neutron sources was demonstrated. We outline the basics of lase...
Laser-driven neutron source (LDNS) is attracting interest for several reasons including (i) compactn...
Within the framework of this thesis the generation of neutrons using ultrashort laser pulses with mo...
Neutron production capabilities of table-top laser accelerated protons based on data from a high-ene...
Neutrons make it possible to probe matter in a unique and valuable way compared to what is possible ...
Neutron production rates using laser-accelerated protons from high-energy single-shot laser (giant p...
Due to their unique interaction with matter, neutrons are an interesting research and diagnostic ins...
International audienceLaser-driven neutron sources could offer a promising alternative to those base...