DocumentCode :
880924
Title :
Recent progress in high-power blue-violet lasers
Author :
Uchida, Shiro ; Takeya, Motonobu ; Ikeda, Shinro ; Mizuno, Takashi ; Fujimoto, Tsuyoshi ; Matsumoto, Osamu ; Goto, Shu ; Tojyo, Tsuyoshi ; Ikeda, Masao
Author_Institution :
Dev. Center, Sony Shiroishi Semicond. Inc., Miyagi, Japan
Volume :
9
Issue :
5
fYear :
2003
Firstpage :
1252
Lastpage :
1259
Abstract :
The property of GaInN-AlGaN heterostructures and GaInN multiple quantum well (MQW) gain GaInN laser diodes with low internal loss are described. GaInN blue-violet laser diodes have been developed as a light source for optical disk recording. However, the threshold current density of these diodes has been difficult to reduce and remains high at around 3-4 kA/cm2. This is thought to be due to the large transparency current density Jt and the large optical internal loss αi. Recently, the internal loss was successfully reduced to 13.6 cm-1 by optimizing the design of the near active region and achieved stable continuous operation under 50-mW continuous wave at 70°C. Other laser characteristics such as far-field patterns and laser noise have also been improved for optical disk use.
Keywords :
III-V semiconductors; current density; gallium compounds; indium compounds; laser noise; laser stability; optical disc storage; optical losses; quantum well lasers; semiconductor quantum wells; transparency; wide band gap semiconductors; 400 nm; 50 mW; 70 degC; GaInN blue-violet laser diodes; GaInN laser diodes; GaInN multiple quantum well; GaInN-AlGaN; GaInN-AlGaN heterostructures; MQW; design optimization; far field patterns; high-power blue violet lasers; laser noise; optical disk recoding; optical internal loss; stable continuous operation; threshold current density; transparency current density; Diode lasers; Disk recording; Laser noise; Light sources; Optical losses; Optical noise; Optical recording; Quantum well devices; Quantum well lasers; Threshold current;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2003.820910
Filename :
1263959
Link To Document :
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