High repetition-rate foam targetry for laser–plasma interaction experiments: Concept and preliminary results

Foam targets have gained considerable importance over the last decade in laser–matter interaction. They find widespread applications such as in inertial confinement fusion and secondary sources for particles and radiation. At the same time, the advent of high repetition-rate laser systems, be they s...

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Veröffentlicht in:Review of scientific instruments 2024-06, Vol.95 (6)
Hauptverfasser: Forsman, A., Do, M., Haid, A., Keaty, L., Manuel, M. J.-E., Lovelace, G., Williams, J., Carlson, L., Alexander, N., Condamine, F. P., Fauvel, G., Hernandez, J.-C., Laštovička, T., Rubovič, P., Singh, R., Weber, S.
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container_issue 6
container_start_page
container_title Review of scientific instruments
container_volume 95
creator Forsman, A.
Do, M.
Haid, A.
Keaty, L.
Manuel, M. J.-E.
Lovelace, G.
Williams, J.
Carlson, L.
Alexander, N.
Condamine, F. P.
Fauvel, G.
Hernandez, J.-C.
Laštovička, T.
Rubovič, P.
Singh, R.
Weber, S.
description Foam targets have gained considerable importance over the last decade in laser–matter interaction. They find widespread applications such as in inertial confinement fusion and secondary sources for particles and radiation. At the same time, the advent of high repetition-rate laser systems, be they short-pulse in the tens of femtosecond regime or in the kilo-Joule nanosecond regime, calls for equally high repetition rate targetry systems. A well-established repetition-rate targetry system is the tape target. In this article, we present the successful marriage of a tape target delivery system with 3D-printed foam targets produced by two photon polymerization.
doi_str_mv 10.1063/5.0197995
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subjects Femtosecond pulses
Inertial confinement fusion
Lasers
Plasma interactions
Repetition
Short pulses
title High repetition-rate foam targetry for laser–plasma interaction experiments: Concept and preliminary results
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