Scientific journal paper Q2
One-to-one full-scale simulations of laser-wakefield acceleration using QuickPIC
Jorge Vieira (Vieira, J.); Frederico Fiúza (Fiuza, F.); Ricardo Fonseca (Fonseca, R. A.); Luís Miguel Oliveira Silva (Silva, L. O.); Chengkun Huang (Huang, C. K.); Wei Lu (Lu, W.); Michail Tzoufras (Tzoufras, M.); Frank S. Tsung (Tsung, F. S.); Viktor K. Decyk (Decyk, V. K.); Warren B. Mori (Mori, W. B.); James H. Cooley (Cooley, J.); Thomas Antonsen Jr. (Antonsen Jr., T.); et al.
Journal Title
IEEE Transactions on Plasma Science
Year (definitive publication)
2008
Language
English
Country
United States of America
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Abstract
We use the quasi-static particle-in-cell (PIC) code QuickPIC to perform full-scale one-to-one laser-waketield acceleration (LWFA) numerical experiments, with parameters that closely follow current experimental conditions. The propagation of state-of-the-art laser pulses in both preformed and uniform plasma channels is examined. We show that the presence of the channel is important whenever the laser self-modulations do not dominate the propagation. We examine the acceleration of an externally injected electron beam in the wake generated by similar to 10-J laser pulses, showing that, by using 10-cm-scale plasma channels, it is possible to accelerate electrons to more than 4 GeV. A comparison between QuickPIC and 2-D OSIRIS is provided. Good qualitative agreement between the two codes is found, but the 2-D full PIC simulations fail to predict the correct laser and wakefield amplitudes.
Acknowledgements
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Keywords
Electron accelerators,Lasers,Plasma waves,Simulation
  • Physical Sciences - Natural Sciences