• DocumentCode
    3015315
  • Title

    Numerical analysis for the characteristics of a QW-structure optoelectronic integrated device

  • Author

    Ahmadi, Vahid ; Sheikhi, Mohammad H.

  • Author_Institution
    Dept. of Electr. Eng., Tarbiat Modares Univ., Tehran, Iran
  • fYear
    1998
  • fDate
    1998
  • Firstpage
    54
  • Lastpage
    58
  • Abstract
    Several functions such as optical amplification, switching, and bistability can be obtained by monolithic integration of optoelectronic devices. A physical model for the operation of an optoelectronic integrated device (OEID) composed of a heterojunction phototransistor (HPT) monolithically integrated over a quantum well laser diode (QW-LD) is developed to investigate quantitatively the dynamic response of the QW-OEID. We have considered the internal optical feedback and its effect on the frequency response of the device. Furthermore, a physical model is developed to include the effect of lateral diffusion of carriers inside the device. The results of the numerical analysis for the dynamic response and its dependency on these parameters are presented. It is shown that the quantum well structure leads to enhancement of the optical frequency response of the OEID. The relaxation oscillation time and the overshoot in the optical step and pulse response are reduced
  • Keywords
    carrier relaxation time; dynamic response; frequency response; integrated optoelectronics; optical bistability; optical feedback; optical switches; phototransistors; quantum well lasers; semiconductor device models; semiconductor quantum wells; HPT; QW-LD; QW-OEID; QW-structure optoelectronic integrated device; dynamic response; frequency response; heterojunction phototransistor; internal optical feedback; lateral carrier diffusion; monolithic optoelectronic device integration; numerical analysis; optical amplification; optical bistability; optical frequency response; optical pulse response overshoot; optical step response overshoot; optical switching; optoelectronic integrated device; physical model; quantum well laser diode; quantum well structure; relaxation oscillation time; Diode lasers; Frequency response; Heterojunctions; Monolithic integrated circuits; Numerical analysis; Optical bistability; Optical feedback; Optoelectronic devices; Phototransistors; Stimulated emission;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Semiconductor Electronics, 1998. Proceedings. ICSE '98. 1998 IEEE International Conference on
  • Conference_Location
    Bangi
  • Print_ISBN
    0-7803-4971-7
  • Type

    conf

  • DOI
    10.1109/SMELEC.1998.781149
  • Filename
    781149