Dynamics of guided post-acceleration of protons in a laser-driven travelling-field accelerator

By directing the laser-driven electromagnetic pulses along a helical path, one can achieve a travelling-field accelerator arrangement for simultaneous beam shaping and re-acceleration of laser-accelerated protons. The dynamics of guided acceleration of the transiting protons was studied by varying t...

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Veröffentlicht in:Plasma physics and controlled fusion 2020-11, Vol.62 (11), p.115023
Hauptverfasser: Hadjisolomou, P, Ahmed, H, Prasad, R, Cerchez, M, Brauckmann, S, Aurand, B, Schroer, A M, Swantusch, M, Willi, O, Borghesi, M, Kar, S
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Sprache:eng
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Zusammenfassung:By directing the laser-driven electromagnetic pulses along a helical path, one can achieve a travelling-field accelerator arrangement for simultaneous beam shaping and re-acceleration of laser-accelerated protons. The dynamics of guided acceleration of the transiting protons was studied by varying the length of the helical coil. Experimental data shows that the protons co-moving with the field region exhibit stronger focussing while increasing the coil length, with an increase of kinetic energy due to simultaneous post-acceleration. The net energy gain for a coil of constant pitch however saturates eventually when the post-accelerated protons overtakes the accelerating field region in due course. 3D particle tracing simulation underpins the dynamics of beam transport inside the coil, which highlights the requirement for a variable pitch coil geometry in order to sustain the post-acceleration over an extended coil.
ISSN:0741-3335
1361-6587
DOI:10.1088/1361-6587/abb91a