Gamma-ray flash in the interaction of a tightly focused single-cycle ultra-intense laser pulse with a solid target

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Abstract

We employ the γ3 regime where a near-single-cycle laser pulse is tightly focused, thus providing the highest possible intensity for the minimal energy at a certain laser power. The quantum electrodynamics processes in the course of the interaction of an ultra-intense laser with a solid target are studied via three-dimensional particle-in-cell simulations, revealing the generation of copious γ-photons and electron-positron pairs. A parametric study of the laser polarisation, target thickness and electron number density shows that a radially polarised laser provides the optimal regime for γ-photon generation. By varying the laser power in the range of 1 to 300 PW we find the scaling of the laser to γ-photon energy conversion efficiency. The laser-generated γ-photon interaction with a high- target is further studied using Monte Carlo simulations revealing further electron-positron pair generation and radioactive nuclide creation.

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Hadjisolomou, P., Jeong, T. M., Valenta, P., Kolenaty, D., Versaci, R., Olšovcová, V., … Bulanov, S. V. (2022). Gamma-ray flash in the interaction of a tightly focused single-cycle ultra-intense laser pulse with a solid target. Journal of Plasma Physics, 88(1). https://doi.org/10.1017/S0022377821001318

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