A Fokker-Planck code for laser plasma interaction in femtosecond-laser shock peening

  • Zhencheng Ren
  • , Guo Xiang Wang
  • , Chang Ye
  • , Yalin Dong

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

A Fokker-Planck code is developed to simulate the laser-plasma interaction in the femtosecond-laser shock peening and forming processes. A numerical scheme dealing with high-energy concentration and its resulting steep gradient are presented, and the source code is provided as supplementary material for further usage. The breakdown of the classical heat transport theory is observed when the laser intensity increases. The difference in heat flow between the classical theory and simulation is presented. It is found that the classical heat transport theory overestimates heat flow by orders of magnitude during femtosecond-laser shock peening or forming. As a result, the electron pressure can be underestimated using the classical hydrodynamic code.

Original languageEnglish
Article number085204
JournalJournal of Physics D: Applied Physics
Volume49
Issue number8
DOIs
StatePublished - 27 Jan 2016

Keywords

  • femtosecond-laser shock peening
  • Fokker-Planck equation
  • laser plasma interaction

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