• DocumentCode
    3253944
  • Title

    Effect of enhanced nitridation in PECVD-Ti process for sub-0.2 μm metal bit-line common contact process

  • Author

    Park, Hee Sook ; Moon, Kwang Jin ; Lee, Myoung Bum ; Kang, Sang Bom ; Choi, Gil Heyun ; Park, Young Wook ; Moon, Joo Tae

  • Author_Institution
    Semicond. R&D Center, Samsung Electron., Kyungki, South Korea
  • fYear
    2001
  • fDate
    2001
  • Firstpage
    93
  • Lastpage
    96
  • Abstract
    The implementation of W bit-line enabled the integration of n+ and p+ common contact process at bit-line level. Despite the advantages of the common contact process such as chip-area reduction and elimination of the burden associated with MC dry etch, the immediate implementation of the common contact is difficult due to large increase of p+ contact resistance with high thermal budget capacitor process. The results of the present investigation indicate that the thickness of TiSi2 layer must be minimized in order to prevent the out-diffusion of boron into silicide layer. However, simply reducing the thickness of TiSi2 presents another problem since it leads to a discontinuous layer of TiSi2. Heavily increasing the dosage of p+ plug implantation, which is another way of preventing the depletion of boron dopants, resulted in degradation of p+ contact resistance. Therefore, the dopant out-diffusion alone cannot explain the degradation of p+ contact resistance. In order to minimized the thickness of TiSi2, enhanced nitridation after deposition of PECVD-Ti was tested and resulted in effective reduction of the p+ contact resistance by 25%. The TEM and SIMS analysis showed that the additional growth of TiSi2 during high thermal budget post annealing was suppressed by the enhanced nitridation. The mechanism responsible for reducing the p+ contact resistance by the enhanced nitridation is attributed to the prevention of the dopant depletion at the interface between TiSi2 and Si due to the suppressed formation of additional TiSi2
  • Keywords
    annealing; contact resistance; integrated circuit metallisation; ion implantation; nitridation; plasma CVD coatings; secondary ion mass spectra; titanium; transmission electron microscopy; tungsten; 0.2 micron; PECVD-Ti process; SIMS; Si:B; TEM; Ti; TiSi2; TiSi2 layer; W; W bit-line common contact; annealing; boron out-diffusion; contact resistance; enhanced nitridation; ion implantation; Annealing; Boron; Capacitors; Contact resistance; Degradation; Dry etching; Plugs; Silicides; Testing; Thermal resistance;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    VLSI Technology, Systems, and Applications, 2001. Proceedings of Technical Papers. 2001 International Symposium on
  • Conference_Location
    Hsinchu
  • ISSN
    1524-766X
  • Print_ISBN
    0-7803-6412-0
  • Type

    conf

  • DOI
    10.1109/VTSA.2001.934491
  • Filename
    934491