A compact, all-optical positron production and collection scheme

Fuente: arXiv
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Main Authors: Terzani, Davide, Benedetti, Carlo, Bulanov, Stepan S., Schroeder, Carl B., Esarey, Eric
Format: Preprint
Published: 2023
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author Terzani, Davide
Benedetti, Carlo
Bulanov, Stepan S.
Schroeder, Carl B.
Esarey, Eric
author_facet Terzani, Davide
Benedetti, Carlo
Bulanov, Stepan S.
Schroeder, Carl B.
Esarey, Eric
contents In this paper we discuss a compact, laser-plasma-based scheme for the generation of positron beams suitable to be implemented in an all-optical setup. A laser-plasma-accelerated electron beam hits a solid target producing electron-positron pairs via bremsstrahlung. The back of the target serves as a plasma mirror to in-couple a laser pulse into a plasma stage located right after the mirror where the laser drives a plasma wave (or wakefield). By properly choosing the delay between the laser and the electron beam the positrons produced in the target can be trapped in the wakefield, where they are focused and accelerated during the transport, resulting in a collimated beam. This approach minimizes the ballistic propagation time and enhances the trapping efficiency. The system can be used as an injector of positron beams and has potential applications in the development of a future, compact, plasma-based electron-positron linear collider.
format Preprint
id arxiv_https___arxiv_org_abs_2309_01895
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A compact, all-optical positron production and collection scheme
Terzani, Davide
Benedetti, Carlo
Bulanov, Stepan S.
Schroeder, Carl B.
Esarey, Eric
Accelerator Physics
Applied Physics
Computational Physics
Plasma Physics
In this paper we discuss a compact, laser-plasma-based scheme for the generation of positron beams suitable to be implemented in an all-optical setup. A laser-plasma-accelerated electron beam hits a solid target producing electron-positron pairs via bremsstrahlung. The back of the target serves as a plasma mirror to in-couple a laser pulse into a plasma stage located right after the mirror where the laser drives a plasma wave (or wakefield). By properly choosing the delay between the laser and the electron beam the positrons produced in the target can be trapped in the wakefield, where they are focused and accelerated during the transport, resulting in a collimated beam. This approach minimizes the ballistic propagation time and enhances the trapping efficiency. The system can be used as an injector of positron beams and has potential applications in the development of a future, compact, plasma-based electron-positron linear collider.
title A compact, all-optical positron production and collection scheme
topic Accelerator Physics
Applied Physics
Computational Physics
Plasma Physics
url https://arxiv.org/abs/2309.01895