Ion acceleration by superintense laser-plasma interaction

Ускорение ионов при взаимодействии сверхинтенсивного лазерного излучения с плазмой
M. Borghesi, Andrea Macchi, M. Passoni
2013-05-10

ion accelerationlaser-driven particle accelerationlaser-plasma interactionproton and ion beamssuperintense laser pulses
Ion acceleration driven by superintense laser pulses is attracting an impressive and steadily increasing effort. Motivations can be found in the applicative potential and in the perspective to investigate novel regimes as available laser intensities will be increasing. Experiments have demonstrated, over a wide range of laser and target parameters, the generation of multi-MeV proton and ion beams with unique properties such as ultrashort duration, high brilliance, and low emittance. An overview is given of the state of the art of ion acceleration by laser pulses as well as an outlook on its future development and perspectives. The main features observed in the experiments, the observed scaling with laser and plasma parameters, and the main models used both to interpret experimental data and to suggest new research directions are described.
1
Existing theoretical and computational models interpret observed acceleration behavior and guide proposed research directions.
2
Experimental results reveal scaling relationships between ion acceleration and laser or plasma parameters.
3
Laser-driven ion beams exhibit distinctive properties including ultrashort duration, high brilliance, and low emittance.
4
Superintense laser–plasma interactions generate multi-MeV proton and ion beams across a wide range of laser and target parameters.
5
The field’s future development is motivated by increasing laser intensities, potential applications, and access to novel acceleration regimes.

ion acceleration driven by superintense laser pulses in laser–plasma interactions

the properties, parameter scaling, physical mechanisms, and development prospects of laser-accelerated multi-MeV proton and ion beams

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Publication Date
2013-05-10
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Authors
M. Borghesi
Andrea Macchi
M. Passoni
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