Optically Programmable Gate Array 구현을 위한 수직 공진형 완전공핍 광싸이리스터

Design of Monolithically Integrated Vertical Cavity Laser with Depleted Optical Thyristor for Optically Programmable Gate Array

초록

We have theoretically analyzed the monolithic integration of vertical cavity lasers with depleted optical thyristor (VCL-DOT) structure and experimentally demonstrated optical logic gates such as AND-gate, OR-gate, and INVERTER implemented by VCL-DOT for an optical programmable gate array. The optical AND and OR gates have been realized by changing a input bias of the single VCL-DOTs and all kinds of optical logic functions are also implemented by adjusting an intensity of the reference input beams into the differential VCL-DOTs. To achieve the high sensitivity, high slope efficiency and low threshold current, a small active region of lasing part and a wide detecting area are simultaneously designed by using a selective oxidation process. The fabricated devices clearly show nonlinear s-shaped current-voltage characteristics and lasing characteristics of a low threshold current with 0.65 mA and output spectrum at 854 nm.

키워드

Vertical Cavity Laser; Depleted Optical Thyristor; Optical Switch
제목
Optically Programmable Gate Array 구현을 위한 수직 공진형 완전공핍 광싸이리스터
제목 (타언어)
Design of Monolithically Integrated Vertical Cavity Laser with Depleted Optical Thyristor for Optically Programmable Gate Array
저자
최운경; 김도균; 최영완
발행일
2009
저널명
전기학회논문지ABCD
권
58
호
8
페이지
1580 ~ 1584