Title :
100-mW kink-free blue-violet laser diodes with low aspect ratio
Author :
Asano, Takeharu ; Tojyo, Tsuyoshi ; Mizuno, Takashi ; Takeya, Motonobu ; Ikeda, Shinro ; Shibuya, Katsuyoshi ; Hino, Tomonori ; Uchida, Shiro ; Ikeda, Masao
Author_Institution :
Dev. Center, Sony Shiroishi Semicond. Inc., Miyagi, Japan
fDate :
1/1/2003 12:00:00 AM
Abstract :
400-nm-band GaN-based laser diodes (LDs) operating with a kink-free output power of over 100 mW and having a low aspect ratio of 2.3 have been successfully fabricated for the first time. A new ridge structure, in which the outside of the ridge is covered with a stacked layer of Si on SiO2 and the ridge width is as narrow as 1.5 μm, is applied to realize high kink-free output power with a wide beam divergence angle parallel to the junction plane. A new layer structure around the active layer is demonstrated to be quite effective for obtaining a narrow beam divergence angle perpendicular to the junction plane, maintaining low threshold current. Ten LDs with low aspect ratio have been operated stably for over 1000 h under 30-mW continuous-wave operation at 60°C. Relative intensity noise measured under optical feedback with high-frequency modulation is as low as -125 dB/Hz. These results indicate that this LD is suitable for next-generation high-density optical storage systems.
Keywords :
III-V semiconductors; gallium compounds; laser feedback; laser noise; laser transitions; optical modulation; optical storage; quantum well lasers; wide band gap semiconductors; 1.5 micron; 100 mW; 1000 h; 30 mW; 400 nm; 60 degC; Ga0.92In0.08N-Ga0.98In0.02N; GaN; GaN-based laser diodes; MQW active layer; Si-SiO2; active layer; continuous-wave operation; high-frequency modulation; junction plane; kink-free blue-violet laser diodes; kink-free output power; layer structure; low aspect ratio; low threshold current; narrow beam divergence angle; next-generation high-density optical storage systems; optical feedback; relative intensity noise; ridge structure; ridge width; stacked layer; wide beam divergence angle; Diode lasers; Laser feedback; Laser modes; Laser noise; Laser theory; Optical feedback; Optical noise; Optical refraction; Optical variables control; Power generation;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2002.806213