High-flux neutrons for imaging and materials analysis applications have typically been provided by accelerator- and reactor-based neutron sources. A novel approach is to use ultraintense (>1018W/cm2) lasers to generate picosecond, collimated neutrons from a dual target configuration. In this article, the production capabilities of present and upcoming laser facilities are estimated while independently maximizing neutron yields and minimizing beam divergence. A Monte-Carlo code calculates angular and energy distributions of neutrons generated by D-D fusion events occurring within a deuterated target for a given incident beam of D+ ions. Tailoring of the incident distribution via laser parameters and microlens focusing modifies the emerging n...
Neutron beams, both pulsed and continuous, are a powerful tool in a wide variety of research fields ...
Within the framework of this thesis the generation of neutrons using ultrashort laser pulses with mo...
International audienceLaser-driven neutron sources could offer a promising alternative to those base...
International audienceContemporary ultraintense, short-pulse laser systems provide extremely compact...
More than 20 years ago, the first ion acceleration experiments were performed using Target Normal Sh...
Laser-driven neutron source (LDNS) is attracting interest for several reasons including (i) compactn...
The most established route to create a laser-based neutron source is by employing laser accelerated,...
More than 20 years ago, the first ion acceleration experiments were performed using Target Normal Sh...
Neutrons are a unique tool to alter and diagnose material properties and excite nuclear reactions wi...
A laptop neutron source suited for the most demanding field or laboratory applications is presented....
A scheme for neutron production is investigated in which an ultra-intense laser is irradiated into a...
Neutron beams, both pulsed and continuous, are a powerful tool in a wide variety of research fields ...
Within the framework of this thesis the generation of neutrons using ultrashort laser pulses with mo...
International audienceLaser-driven neutron sources could offer a promising alternative to those base...
International audienceContemporary ultraintense, short-pulse laser systems provide extremely compact...
More than 20 years ago, the first ion acceleration experiments were performed using Target Normal Sh...
Laser-driven neutron source (LDNS) is attracting interest for several reasons including (i) compactn...
The most established route to create a laser-based neutron source is by employing laser accelerated,...
More than 20 years ago, the first ion acceleration experiments were performed using Target Normal Sh...
Neutrons are a unique tool to alter and diagnose material properties and excite nuclear reactions wi...
A laptop neutron source suited for the most demanding field or laboratory applications is presented....
A scheme for neutron production is investigated in which an ultra-intense laser is irradiated into a...
Neutron beams, both pulsed and continuous, are a powerful tool in a wide variety of research fields ...
Within the framework of this thesis the generation of neutrons using ultrashort laser pulses with mo...
International audienceLaser-driven neutron sources could offer a promising alternative to those base...