• DocumentCode
    2247512
  • Title

    Ultra trace analysis and electrical characterization of Cu diffusion through thin quasi-amorphous Ta-N-O barriers

  • Author

    Stavrev, M. ; Fischer, D. ; Wenzel, C. ; Heiser, T.

  • Author_Institution
    Semicond. & Microsyst. Technol. Lab., Tech. Univ. Dresden, Germany
  • fYear
    1997
  • fDate
    16-19 March 1997
  • Firstpage
    125
  • Lastpage
    126
  • Abstract
    Besides the advantages of Cu-based metallization systems, like lower electrical resistivity and higher electromigration resistance, they have one major drawback-Cu is a fast diffuser into Si and SiO/sub 2/. Hence, a diffusion or drift barrier is necessary between Cu and Si or SiO/sub 2/ respectively, in order to prevent deterioration of the devices. Many refractory metals and their compounds have been studied, with Ta-based diffusion barriers being among the most promising. Unfortunately, most of these barriers are polycrystalline and provide inadequate protection because they contain grain boundaries that may serve as active diffusion paths for Cu. Depositing an amorphous-like film even very thin (/spl les/50 nm) barriers can be used without any danger for the integrity of future ULSI devices. This work focuses on the microanalytical and electrical characterization of 5 to 50 nm thin quasi-amorphous Ta-N-O diffusion barriers in the Cu/Si contact system.
  • Keywords
    ULSI; chemical interdiffusion; diffusion barriers; electrical resistivity; electromigration; grain boundary diffusion; integrated circuit metallisation; tantalum compounds; 5 to 50 nm; TaNO; ULSI devices; active diffusion paths; diffusion barrier; electrical characterization; electrical resistivity; electromigration resistance; grain boundaries; metallization systems; ultra trace analysis; Contacts; Electric resistance; Electromigration; Grain boundaries; Inorganic materials; Metallization; Optical films; Protection; Ultra large scale integration; X-ray scattering;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Materials for Advanced Metallization, 1997. MAM '97 Abstracts Booklet., European Workshop
  • Conference_Location
    Villard de Lans, France
  • ISSN
    1266-0167
  • Type

    conf

  • DOI
    10.1109/MAM.1997.621084
  • Filename
    621084