Shallow junction doping technologies for ULSI

被引:118
作者
Jones, EC
Ishida, E
机构
[1] Kyoto Univ, Kyoto 606, Japan
[2] Adv Micro Devices Inc, Sunnyvale, CA 94088 USA
关键词
shallow junction; doping; ultra-large-scale integrated circuits; low energy implantation; metal-oxide-semiconductor field effect transistors;
D O I
10.1016/S0927-796X(98)00013-8
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The fabrication of thin, sub-40 nm doped layers in Si with high concentrations of electrically active dopants and box-like profiles is a major technological challenge. Making these regions without introducing residual defects in the material and without affecting the properties of other material regions in the device is even more difficult. The need to control these properties of doping profiles in ultra-large-scale integrated (ULSI) circuits has driven the study of low energy implantation, transient enhanced diffusion (TED), and focused the search for new shallow junction doping techniques. In this article, we review the motivation for shallow junctions, specific requirements for shallow junctions used in deep sub-micron dimension metal-oxide-semiconductor field effect transistors (MOSFETs), current understanding of implant and diffusion processes, and the state-of-the-art in low energy implantation and a number of alternate doping technologies, including plasma implantation, gas-immersion laser (GILD) doping, rapid vapor-phase doping (RVD), ion shower doping, and decaborane (B10H14) implantation. (C) 1998 Elsevier Science S.A. All rights reserved.
引用
收藏
页码:1 / 80
页数:80
相关论文
共 292 条
  • [1] AGARWAL A, 1997, P MEAS CHAR MOD ULTR
  • [2] AKIZUKI M, 1996, JPN J APPL PHYS, V135, P1450
  • [3] 2-PHOTON PROCESSES IN DEFECT FORMATION BY EXCIMER LASERS IN SYNTHETIC SILICA GLASS
    ARAI, K
    IMAI, H
    HOSONO, H
    ABE, Y
    IMAGAWA, H
    [J]. APPLIED PHYSICS LETTERS, 1988, 53 (20) : 1891 - 1893
  • [4] SURFACE DOPING OF SEMICONDUCTORS BY PULSED-LASER IRRADIATION IN REACTIVE ATMOSPHERE
    BENTINI, GG
    BIANCONI, M
    SUMMONTE, C
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 1988, 45 (04): : 317 - 324
  • [5] BENTINI GG, 1989, P SOC PHOTO-OPT INS, V1190, P142
  • [6] High dose-rate hydrogen passivation of polycrystalline silicon CMOS TFT's by plasma ion implantation
    Bernstein, JD
    Qin, S
    Chan, C
    King, TJ
    [J]. IEEE TRANSACTIONS ON ELECTRON DEVICES, 1996, 43 (11) : 1876 - 1882
  • [7] SHALLOW P-N-JUNCTIONS PRODUCED BY LASER DOPING WITH BORON SILICATE GLASS
    BOLLMANN, D
    NEUMAYER, G
    BUCHNER, R
    HABERGER, K
    [J]. APPLIED SURFACE SCIENCE, 1993, 69 (1-4) : 249 - 252
  • [8] BORLAND JO, 1993, SOLID STATE TECHNOL, V36, P28
  • [9] BOUDINOV H, 1994, P RAP THERM INT PROC, P357
  • [10] Search for the optimal channel architecture for 0.18/0.12 mu m bulk CMOS experimental study
    Bouillon, P
    Skotnicki, T
    Kelaidis, C
    Gwoziecki, R
    Dollfus, P
    Regolini, JL
    Sagnes, I
    Bodnar, S
    [J]. IEDM - INTERNATIONAL ELECTRON DEVICES MEETING, TECHNICAL DIGEST 1996, 1996, : 559 - 562