• DocumentCode
    1802915
  • Title

    Simulation research on FIB processing: A comparison between silicon and diamond

  • Author

    Tong, Z. ; Luo, X.C. ; Liang, Y.C. ; Bai, Q.S. ; Sun, J.N.

  • Author_Institution
    Mech. Eng. (EPS), Heriot-Watt Univ., Edinburgh, UK
  • fYear
    2012
  • fDate
    7-8 Sept. 2012
  • Firstpage
    1
  • Lastpage
    5
  • Abstract
    The interactions between energetic gallium ion with silicon and diamond have been studied using Large-Scale Molecular Dynamics simulation method. In order to reveal the dependence of implantation depth and damage upon the beam voltage, a serial of simulations have been performed under impact energy of 2, 5, 8, 12, and 16 kev respectively for the Ga ions. The results indicate that both the normalized implantation depth D and the peak temperature (Tmax) during the collision process are increased with the increase of the impact beam voltage. With the same lattice crystal structure and collision energy, the silicon contains a higher Tmax and a smaller D compared with diamond under all impact energy tested. Further damage evolution analysis and lattice structure changes reflected by radius distribution function (RDF) indicate that the damage of silicon caused by ion bombardment is worse than diamond, which is mainly related to the higher collision temperature and lateral recrystallization process.
  • Keywords
    diamond; elemental semiconductors; focused ion beam technology; gallium; impact ionisation; ion implantation; materials testing; molecular dynamics method; nanostructured materials; recrystallisation; semiconductor doping; silicon; C:Ga; FIB processing; Si:Ga; collision energy; collision temperature; damage evolution analysis; diamond; electron volt energy 2 keV to 16 keV; energetic gallium ion; impact beam voltage; impact energy testing; ion bombardment; large-scale molecular dynamics simulation; lattice crystal structure; normalized implantation depth; radius distribution function; recrystallization; silicon; Computational modeling; Diamond-like carbon; Gallium; Ion beams; Lattices; Silicon; diamond; ion collision; molecular dynamic;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Automation and Computing (ICAC), 2012 18th International Conference on
  • Conference_Location
    Loughborough
  • Print_ISBN
    978-1-4673-1722-1
  • Type

    conf

  • Filename
    6330521