• DocumentCode
    1502869
  • Title

    Characteristics of a-SiGe:H Thin Film Transistor Infrared Photosensor for Touch Sensing Displays

  • Author

    Han, Sang Youn ; Jeon, Kyung Sook ; Cho, Byeonghoon ; Seo, Mi Seon ; Song, Junho ; Kong, Hyang-Shik

  • Author_Institution
    LCD R&D Center, Samsung Electron., Yongin, South Korea
  • Volume
    48
  • Issue
    7
  • fYear
    2012
  • fDate
    7/1/2012 12:00:00 AM
  • Firstpage
    952
  • Lastpage
    959
  • Abstract
    Photo-generation properties in an amorphous SiGe:H thin film transistor (TFT) were characterized by analyzing the electrical performances under illumination. The a-SiGe:H TFT showed a higher photo sensitivity at the wavelength of IR regime, and as a-SiGe:H layer was thicker, the generated photo currents proportionally increased due to the higher photon absorption. The increase of Ge composition led to the reduction of optical energy band gap. However, the photo sensitivity was not increased with lowering of energy band gap due to the creation of defects in the layer. The photo generation was dependent on the geometry of TFT, such as channel width and length. In particular, it was observed that regions under the source/drain electrode played a critical role in generating the photo currents which was demonstrated by technology computer-aided design simulation. Based on these, the generation of photo current and the photo field effect in a-SiGe:H TFT were interpreted using band diagrams. A-SiGe:H IR photosensor-embedded liquid crystal display panel was successfully demonstrated, indicating that these can be useful to broad use in the photo-type touch sensor, photo detector, and solar cell devices.
  • Keywords
    Ge-Si alloys; hydrogen; infrared detectors; liquid crystal displays; thin film transistors; touch sensitive screens; SiGe:H; electrical performance; liquid crystal display panel; photo current generation; photo field effect; photo type touch sensor; photodetector; solar cell device; thin film transistor infrared photosensor; touch sensing displays; Absorption; Lighting; Logic gates; Optical sensors; Photonics; Sensitivity; Thin film transistors; Amorphous SiGe; infrared detector; photosensor; thin film transistor;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2012.2196411
  • Filename
    6189722