Online target normal sheath acceleration proton beam stabilization at 1 Hz in ultra-intense laser–matter interaction

We introduce a versatile high-repetition-rate solid tape target system suitable for relativistic laser-plasma driven secondary sources. We demonstrate the operation and stability monitoring based on a petawatt laser focused at 1 Hz. Experiments were carried out at the VEGA-3 laser system of the Cent...

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Main Authors: Jose Luis Henares, Michael Ehret, Jon Apiñaniz, Carlos Salgado-López, José Antonio Pérez-Hernández, María Luisa Berlanga, Ana María Cives Fernández, Evgeny Filippov, Enrique García-García, Rubén Hernández Martín, Diego De Luis, Pilar Puyuelo-Valdes, Isabel Rodríguez-Pérez, María Dolores Rodríguez Frías, Iuliana-Mariana Vladisavlevici, Giancarlo Gatti
Format: Article
Language:English
Published: Cambridge University Press 2024-01-01
Series:High Power Laser Science and Engineering
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Online Access:https://www.cambridge.org/core/product/identifier/S2095471924000793/type/journal_article
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Summary:We introduce a versatile high-repetition-rate solid tape target system suitable for relativistic laser-plasma driven secondary sources. We demonstrate the operation and stability monitoring based on a petawatt laser focused at 1 Hz. Experiments were carried out at the VEGA-3 laser system of the Centro de Láseres Pulsados facility where results for different tape materials and thicknesses are presented. Experimental proton spectra were recorded by a Thomson parabola spectrometer and a time-of-flight detector. In addition, non-invasive detectors, such as a target charging monitor and ionization chamber detectors, were tested as metrology for the stability of the source. Degradation of the proton signal at high-repetition-rate operation was observed and it was solved by online optimization of the relative focus position of the target and laser beam parameters. We report the use of the tape target for bursts of 1000 shots at 1 Hz with mean cut-off energies of about 10 MeV in optimized interaction conditions.
ISSN:2095-4719
2052-3289