Laser driven MeV proton beam focussing by auto-charged electrostatic lens configuration


Autoria(s): Kar, Satyabrata; Markey, K.; Simpson, P.T.; Bellei, C.; Green, J.S.; Nagel, S.R.; Kneip, S.; Carroll, D.C.; Dromey, Brendan; Willingale, L.; Clark, E.L.; McKenna, P.; Najmudin, Z.; Krushelnick, K.; Norreys, P.; Clarke, R.J.; Neely, D.; Borghesi, Marco; Schiavi, A.; Zepf, Matthew
Data(s)

01/09/2008

Resumo

Significant reduction of inherent large divergence of the laser driven MeV proton beams is achieved by strong (of the order of 10^9 V/m ) electrostatic focussing field generated in the confined region of a suitably shaped structure attached to the proton generating foil. The scheme exploits the positively charging of the target following an intense laser interaction. Reduction in the proton beam divergence, and commensurate increase in proton flux is observed while preserving the beam laminarity. The underlying mechanism has been established by the help of particle tracing simulations. Dynamic focussing power of the lens, mainly due to the target discharging, can also be exploited in order to bring up the desired chromaticity of the lens for the proton beams of broad energy range.

Identificador

http://pure.qub.ac.uk/portal/en/publications/laser-driven-mev-proton-beam-focussing-by-autocharged-electrostatic-lens-configuration(1ec6acd3-6e3a-44bf-9a70-bb26b10b6cf1).html

http://dx.doi.org/10.1063/1.2958190

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Kar , S , Markey , K , Simpson , P T , Bellei , C , Green , J S , Nagel , S R , Kneip , S , Carroll , D C , Dromey , B , Willingale , L , Clark , E L , McKenna , P , Najmudin , Z , Krushelnick , K , Norreys , P , Clarke , R J , Neely , D , Borghesi , M , Schiavi , A & Zepf , M 2008 , Laser driven MeV proton beam focussing by auto-charged electrostatic lens configuration . in AIP Conf. Proc. . vol. 1024 , pp. 173-182 , 1st International Symposium on Laser-Driven Relativistic Plasmas Applied for Science, Industry, and Medicine , Kyoto , Japan , 1-1 September . DOI: 10.1063/1.2958190

Tipo

contributionToPeriodical