Target surface area effects on hot electron dynamics from high intensity laser-plasma interactions

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Abstract

Reduced surface area targets were studied using an ultra-high intensity femtosecond laser in order to determine the effect of electron sheath field confinement on electron dynamics. X-ray emission due to energetic electronswas imaged using a Kα imaging crystal. Electronswere observed to travel along the surface of wire targets, and were slowed mainly by the induced fields. Targets with reduced surface areas were correlated with increased hot electron densities and proton energies. Hybrid Vlasov-Fokker-Planck simulations demonstrated increased electric sheath field strength in reduced surface area targets.

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Zulick, C., Raymond, A., McKelvey, A., Chvykov, V., Maksimchuk, A., Thomas, A. G. R., … Krushelnick, K. (2016). Target surface area effects on hot electron dynamics from high intensity laser-plasma interactions. New Journal of Physics, 18(6). https://doi.org/10.1088/1367-2630/18/6/063020

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