Nano and micro structured targets to modulate the spatial profile of laser driven proton beams

Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

Abstract

Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the high intensity laser system operating at LLC (Lund Laser Centre, Sweden) in order to systematically study and improve the main proton beam parameters. Nano-spheres deposited on the front (laser irradiated) surface of a flat Mylar foil enabled a small enhancement of the maximum energy and number of the accelerated protons. Nano-spheres on the rear side allowed to modify the proton beam spatial profile. In particular, with nanospheres deposited on the rear of the target, the proton beam spatial homogeneity was clearly enhanced. Silicon nitride thin foils having micro grating structures (with different step dimensions) on the rear surface were also used as targets to influence the divergence of the proton beam and drastically change its shape through a sort of stretching effect. The target fabrication process used for the different target types is described, and representative experimental results are shown and discussed along with supporting 3D particle-in-cell simulations.

Detaljer

Författare
  • L. Giuffrida
  • K. Svensson
  • J. Psikal
  • D. Margarone
  • P. Lutoslawski
  • V. Scuderi
  • G. Milluzzo
  • J Kaufman
  • T. Wiste
  • M. Dalui
  • H. Ekerfelt
  • I. Gallardo Gonzalez
  • A. Picciotto
  • M. Crivellari
  • A. Bagolini
  • P. Bellutti
  • J. Magnusson
  • A. Gonoskov
  • L. Klimsa
  • J. Kopecek
  • T. Lastovicka
  • G. A P Cirrone
  • G. Korn
Enheter & grupper
Externa organisationer
  • Chalmers University of Technology
  • Institute of Physics ASCR
  • Czech Technical University in Prague
  • Southern National Laboratory
  • Fondazione Bruno Kessler (FBK)
  • Academy of Sciences of the Czech Republic
Forskningsområden

Ämnesklassifikation (UKÄ) – OBLIGATORISK

  • Acceleratorfysik och instrumentering

Nyckelord

Originalspråkengelska
ArtikelnummerC03040
TidskriftJournal of Instrumentation
Volym12
Utgivningsnummer3
StatusPublished - 2017 mar 10
PublikationskategoriForskning
Peer review utfördJa