A Platform for Laser-Driven Ion Sources Generated with Nanosecond Laser Pulses in the Intensity Range of 1013–1015 W/cm2
Lorenzo Giuffrida, Valeriia Istokskaia, Antonino Picciotto, Vasiliki Kantarelou, Mario Barozzi, Rosanna Dell`anna, Martin Divoký, Ondřej Denk, Damiano Giubertoni, Filip Grepl, Arsenios Hadjikyriacou, Martin Hanuš, Josef Krasa, Milan Kucharik, Tadzio Levato, Petr Navrátil, Jan Pilař, Francesco Schillaci, Stanislav Stancek, Marco Tosca, Maksym Tryus, Andriy Velyhan, Antonio Lucianetti, Tomáš Mocek, Daniele Margarone
2024 — Quantum Beam Science — DOI: https://doi.org/10.3390/qubs8010005 — https://doi.org/10.3390/qubs8010005
An experimental platform for laser-driven ion (sub-MeV) acceleration and potential applications was commissioned at the HiLASE laser facility. The auxiliary beam of the Bivoj laser system operating at a GW level peak power (~10 J in 5–10 ns) and 1–10 Hz repetition rate enabled a stable production of high-current ion beams of multiple species (Al, Ti, Fe, Si, Cu, and Sn). The produced laser–plasma ion sources were fully characterized against the laser intensity on the target (1013–1015 W/cm2) by varying the laser energy, focal spot size, and pulse duration. The versatility and tuneability of such high-repetition-rate laser–plasma ion sources are of potential interest for user applications. Such a statistically accurate study was facilitated by the large amount of data acquired at the high repetition rate (1–10 Hz) provided by the Bivoj laser system.