Ciência-IUL
Publicações
Descrição Detalhada da Publicação
Título Revista
Physics of Plasmas
Ano (publicação definitiva)
2013
Língua
Inglês
País
Estados Unidos da América
Mais Informação
Web of Science®
Scopus
Google Scholar
Abstract/Resumo
Multi-dimensional particle-in-cell simulations are used to study the generation of electrostatic shocks in plasma and the reflection of background ions to produce high-quality and high-energy ion beams. Electrostatic shocks are driven by the interaction of two plasmas with different density and/or relative drift velocity. The energy and number of ions reflected by the shock increase with increasing density ratio and relative drift velocity between the two interacting plasmas. It is shown that the interaction of intense lasers with tailored near-critical density plasmas allows for the efficient heating of the plasma electrons and steepening of the plasma profile at the critical density interface, leading to the generation of high-velocity shock structures and high-energy ion beams. Our results indicate that high-quality 200 MeV shock-accelerated ion beams required for medical applications may be obtained with current laser systems.
Agradecimentos/Acknowledgements
--
Palavras-chave
Classificação Fields of Science and Technology
- Ciências Físicas - Ciências Naturais
Registos de financiamentos
Referência de financiamento | Entidade Financiadora |
---|---|
267841 | European Research Council |
PHY-0936266 | NSF at UCLA |
DE-FG02-92-ER40727 | DOE |
DE-AC52-07NA27344 | U.S. Department of Energy by Lawrence Livermore National Laboratory |
SFRH/BPD/65008/2009 | Fundação para a Ciência e a Tecnologia |
SFRH/BD/38952/2007 | Fundação para a Ciência e a Tecnologia |
PTDC/FIS/111720/2009 | Fundação para a Ciência e a Tecnologia |