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Versatile tape-drive target for high-repetition-rate laser-driven proton acceleration.

Authors :
Xu, N.
Streeter, M. J. V.
Ettlinger, O. C.
Ahmed, H.
Astbury, S.
Borghesi, M.
Bourgeois, N.
Curry, C. B.
Dann, S. J. D.
Dover, N. P.
Dzelzainis, T.
Istokskaia, V.
Gauthier, M.
Giuffrida, L.
Glenn, G. D.
Glenzer, S. H.
Gray, R. J.
Green, J. S.
Hicks, G. S.
Hyland, C.
Source :
High Power Laser Science & Engineering; 2023, Vol. 11, p1-11, 11p
Publication Year :
2023

Abstract

We present the development and characterization of a high-stability, multi-material, multi-thickness tape-drive target for laser-driven acceleration at repetition rates of up to 100 Hz. The tape surface position was measured to be stable on the sub-micrometre scale, compatible with the high-numerical aperture focusing geometries required to achieve relativistic intensity interactions with the pulse energy available in current multi-Hz and near-future higher repetition-rate lasers (>kHz). Long-term drift was characterized at 100 Hz demonstrating suitability for operation over extended periods. The target was continuously operated at up to 5 Hz in a recent experiment for 70,000 shots without intervention by the experimental team, with the exception of tape replacement, producing the largest data-set of relativistically intense laser--solid foil measurements to date. This tape drive provides robust targetry for the generation and study of high-repetition-rate ion beams using next-generation high-power laser systems, also enabling wider applications of laser-driven proton sources. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20954719
Volume :
11
Database :
Complementary Index
Journal :
High Power Laser Science & Engineering
Publication Type :
Academic Journal
Accession number :
176487598
Full Text :
https://doi.org/10.1017/hpl.2023.27