The hot electron role in shock generation and energy deposition to the hot dense core is crucial for the shock ignition scheme, implying the need for their characterization at laser intensities of interest for shock ignition. In this paper, we analyze the experimental results obtained at the PALS laboratory and provide an estimation of hot electron temperature and conversion efficiency using a semi-analytical approach, including Harrach-Kidder's model.

Semi-analytical approaches to study hot electrons in the shock ignition regime / Afshari, M.; Antonelli, L.; Barbato, F.; Folpini, G.; Jakubowska, K.; Krousky, E.; Renner, O.; Smid, M.; Batani, D.. - In: PHYSICS OF PLASMAS. - ISSN 1070-664X. - 25:12(2018), p. 122702. [10.1063/1.5046725]

Semi-analytical approaches to study hot electrons in the shock ignition regime

Barbato, F.;
2018

Abstract

The hot electron role in shock generation and energy deposition to the hot dense core is crucial for the shock ignition scheme, implying the need for their characterization at laser intensities of interest for shock ignition. In this paper, we analyze the experimental results obtained at the PALS laboratory and provide an estimation of hot electron temperature and conversion efficiency using a semi-analytical approach, including Harrach-Kidder's model.
2018
Shock waves , Laser plasma interactions, Collisional processes
01 Pubblicazione su rivista::01a Articolo in rivista
Semi-analytical approaches to study hot electrons in the shock ignition regime / Afshari, M.; Antonelli, L.; Barbato, F.; Folpini, G.; Jakubowska, K.; Krousky, E.; Renner, O.; Smid, M.; Batani, D.. - In: PHYSICS OF PLASMAS. - ISSN 1070-664X. - 25:12(2018), p. 122702. [10.1063/1.5046725]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1636925
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