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JOURNALS // Vestnik Sankt-Peterburgskogo Universiteta. Seriya 10. Prikladnaya Matematika. Informatika. Protsessy Upravleniya // Archive

Vestnik S.-Petersburg Univ. Ser. 10. Prikl. Mat. Inform. Prots. Upr., 2011 Issue 1, Pages 21–28 (Mi vspui16)

Applied mathematics

Efficient ion beam generation in laser foil interaction – toward a controllable laser ion accelerator

S. Kawataa, K. Takahashia, D. Satoa, D. Baradaa, A. A. Andreevb, O. Klimoc, J. Limpouchc, Y. Y. Mad, Z. M. Shenge, W. M. Wangf, Y. T. Lif, Q. Kongg, P. X. Wangg

a Utsunomiya University, Yohtoh 7-1-2, Utsunomiya 321-8585, Japan
b Vavilov State Institute, St. Petersburg, Russia
c Czech Technical University, Prague, Czech Republic
d National University of Defense Technology, P.R. China
e Shanghai Jiao Tong University, Shanghai, P.R. China
f Institute of Physics, CAS, Beijing, P.R. China
g Institute of Modern Physics, Fudan University, Shanghai, P.R. China

Abstract: A remarkable improvement on the energy conversion efficiency from laser to protons is demonstrated by particle simulations in a laser-foil interaction. The total laser-proton energy conversion efficiency becomes 16.7% in an optimized multi-hole target, though a conventional plane foil target serves a rather low efficiency of a small percentage. When an intense short-pulse laser illuminates the thin foil target, the foil electrons are accelerated around the target by the intense laser. The hot electrons generate a strong electric field, which accelerates the foil protons, and the proton beam is generated. In the previous study, we found that multihole thin-foil target is efficient for the energy conversion from laser to protons [Phys. Rev. E 78, 046401 (2008)], and the energy conversion efficiency was 9.3%. In this paper 2.5-dimensional particle-in-cell simulations are performed, and the results clarify the role of the target hole thickness and depth in the laser-proton energy conversion. The optimized multi-hole foil target provides a remarkable increase in the laser-proton energy conversion efficiency as shown above. Bibliogr. 6 items.

Keywords: intense laser accelerator, ion acceleration, intense laser, ion accelerator.

UDC: 533.9


Accepted: October 14, 2010

Language: English



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