• DocumentCode
    2478091
  • Title

    Study of flicker noise in III-V nitride based heterojunctions due to hot-electron stressing

  • Author

    Ho, W.Y. ; Surya, Charles

  • Author_Institution
    Dept. of Electron. Eng., Hong Kong Polytech., Kowloon, Hong Kong
  • fYear
    1998
  • fDate
    29-29 Aug. 1998
  • Firstpage
    86
  • Lastpage
    89
  • Abstract
    We report detailed characterizations of the effects of hot-electron stressing on low-frequency excess noise in commercial III-V nitride based heterojunction light-emitting diodes. The devices were stressed by applying a dc current ranging from 100 mA to 200 mA. Degradations in the device properties was investigated through detailed studies of the I-V characteristics, electroluminescence and flicker noise over a wide range of temperatures and biases. Our experimental data demonstrated significant distortions in the I-V characteristics. The room temperature electroluminescence of the devices exhibited 25% decrement in the peak emission intensity. In particular, the voltage noise power spectral density increased by nearly three orders of magnitude. The temperature dependencies of the noise power spectra indicate that the noise arises from the thermal activation of carriers to localized states in the heterostructures, Our experiment shows that 1/f noise can be utilized as a sensitive tool for characterizing hot-electron degradation effects in III-V nitride heterojunctions.
  • Keywords
    1/f noise; III-V semiconductors; electroluminescence; flicker noise; hot carriers; interface states; light emitting diodes; localised states; semiconductor device noise; semiconductor heterojunctions; spectral line intensity; wide band gap semiconductors; 1/f noise; 100 to 200 mA; 20 C; I-V characteristics; III-V nitride based heterojunctions; dc current; electroluminescence; flicker noise; heterojunction light-emitting diodes; hot-electron degradation; hot-electron stressing; localized states; low-frequency excess noise; noise power spectra; peak emission intensity; room temperature; temperature dependencies; thermal activation; voltage noise power spectral density; 1f noise; Degradation; Electroluminescent devices; Heterojunctions; III-V semiconductor materials; Light emitting diodes; Low-frequency noise; Temperature dependence; Temperature distribution; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electron Devices Meeting, 1998. Proceedings. 1998 IEEE Hong Kong
  • Conference_Location
    Hong Kong
  • Print_ISBN
    0-7803-4932-6
  • Type

    conf

  • DOI
    10.1109/HKEDM.1998.740194
  • Filename
    740194