• DocumentCode
    3000295
  • Title

    High resolution Deep Level Transient Spectroscopy of p-n diodes formed from p-type polycrystalline diamond on n-type silicon.

  • Author

    Vernon-Parry, Karen D. ; Evans-Freeman, Jan H. ; Mitromara, Niki ; May, Paul W.

  • Author_Institution
    Mater. & Eng. Res. Inst., Sheffield Hallam Univ., Sheffield
  • fYear
    2008
  • fDate
    July 28 2008-Aug. 1 2008
  • Firstpage
    16
  • Lastpage
    19
  • Abstract
    High resolution Laplace deep level transient spectroscopy (LDLTS) at temperatures up to 450 K has been applied to thin polycrystalline semiconducting diamond films deposited on n-type silicon. Such structures form p-n diodes and can be characterised by capacitance DLTS. The boron doped diamond films were grown by hot filament chemical vapour deposition and the diamond film thickness was 3-4 microns. The boron concentration in the diamond films ranged from 7times1018 cm-3 to 1times1019 cm-3. In the LDLTS an isothermal measurement of thousands of capacitance transients was made and then averaged, and the result was inverse transformed to find the trap emission rate. The temperature was chosen as the maximum of the conventional DLTS emission peak. Conventional DLTS showed a combination of majority and minority carrier emission from deep levels. Multiple peaks in the LDLTS spectra suggest that some of the defects are located in a strain field. Capture cross section measurements also show that these peaks exhibit a time dependent capture cross section, which is indicative of carriers being trapped at a large electrically active defect. It is shown in the paper that a combination of LDLTS and direct capture cross section measurements can be applied to semiconducting diamond and can be used to understand whether defects possess single or multiple energy levels, and whether the trapping is at an isolated point defect or in defects in the strain field of an extended defect.
  • Keywords
    boron; deep level transient spectroscopy; deep levels; defect states; diamond; elemental semiconductors; p-n junctions; point defects; semiconductor diodes; semiconductor thin films; silicon; C:B-Si; boron concentration; capacitance DLTS; capture cross section measurements; deep levels; high resolution Laplace deep level transient spectroscopy; hot filament chemical vapour deposition; isothermal measurement; majority carrier emission; minority carrier emission; p-n diodes; point defect; polycrystalline semiconducting diamond films; temperature 450 K; Boron; Capacitance; Chemicals; Semiconductivity; Semiconductor diodes; Semiconductor films; Silicon; Spectroscopy; Strain measurement; Temperature; DLTS; Laplace DLTS; defects; polycrystalline diamond;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Optoelectronic and Microelectronic Materials and Devices, 2008. COMMAD 2008. Conference on
  • Conference_Location
    Sydney, SA
  • ISSN
    1097-2137
  • Print_ISBN
    978-1-4244-2716-1
  • Electronic_ISBN
    1097-2137
  • Type

    conf

  • DOI
    10.1109/COMMAD.2008.4802081
  • Filename
    4802081