• DocumentCode
    3269921
  • Title

    Improved image resolution for wafer inspection tool using sub-200 nm wavelength (DUV light) light optical system

  • Author

    Takahashi, Tetsuo ; Miyazaki, Yoko ; Takeuchi, Naoya ; Tanaka, Toshihiko ; Terasawa, Tsuneo

  • Author_Institution
    MIRAI, Assoc. of Super-Adv. Electron. Technol., Ibaraki, Japan
  • fYear
    2005
  • fDate
    25-28 Oct. 2005
  • Firstpage
    36
  • Lastpage
    37
  • Abstract
    Bright field imaging systems are widely used for inline inspection tools to detect with high sensitivity defects on patterned wafers in semiconductor fabrication processes. We expect to extend this optical inspection method to 65 nm design rule and beyond by an improvement of resolving power using shorter wavelengths. To achieve this improvement, we evaluated inspection imaging characteristics with a DUV (sub-200nm, which is the shortest wavelength in practical use) light by reflectivity simulations and by experiments using a pilot POC (proof of concept) tool. Improvements in image contrast and wafer inspection capability were confirmed by the inspection experiments using test wafers having programmed defects. We confirmed that DUV light has enough reflectivity to inspect defects in principal semiconductor materials, and image contrast improves with increasing magnification when patterns are resolved.
  • Keywords
    automatic optical inspection; image resolution; optical images; reflectivity; ultraviolet sources; DUV light; bright field imaging system; image contrast; image resolution; light optical system; optical inspection method; patterned wafer; semiconductor fabrication process; semiconductor materials; wafer inspection tool; High-resolution imaging; Image resolution; Inspection; Optical design; Optical device fabrication; Optical imaging; Optical sensors; Reflectivity; Semiconductor materials; Testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microprocesses and Nanotechnology Conference, 2005 International
  • Print_ISBN
    4-9902472-2-1
  • Type

    conf

  • DOI
    10.1109/IMNC.2005.203725
  • Filename
    1595201