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Boella, E.; Fiúza, F.; Novo, A. Stockem; Silva, L. O.
SLAC National Accelerator Laboratory, Menlo Park, CA (United States). Funding organisation: USDOE (United States); European Research Council (ERC) (European Commission (EC))2018
SLAC National Accelerator Laboratory, Menlo Park, CA (United States). Funding organisation: USDOE (United States); European Research Council (ERC) (European Commission (EC))2018
AbstractAbstract
[en] Here, a numerical study on ion acceleration in electrostatic shock waves is presented, with the aim of determining the best plasma configuration to achieve quasi-monoenergetic ion beams in laser-driven systems. It was recently shown that tailored near-critical density plasmas characterized by a long-scale decreasing rear density profile lead to beams with low energy spread (Fiúza et al 2012 Phys. Rev. Lett. 109 215001). In this work, a detailed parameter scan investigating different plasma scale lengths is carried out. As result, the optimal plasma spatial scale length that allows for minimizing the energy spread while ensuring a significant reflection of ions by the shock is identified. Furthermore, a new configuration where the required profile has been obtained by coupling micro layers of different densities is proposed. Lastly, results show that this new engineered approach is a valid alternative, guaranteeing a low energy spread with a higher level of controllability.
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OSTIID--1423136; AC02-76SF00515; 267841; 695008; Available from https://www.osti.gov/pages/biblio/1423136; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo period; Country of input: United States
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Journal Article
Journal
Plasma Physics and Controlled Fusion; ISSN 0741-3335; ; v. 60(3); vp
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