Title :
1.3-
m AlGaInAs Multiple-Quantum-Well Semi-insulating Buried-Heterostructure Distributed-Feedback Lasers for High-Speed Direct Modulation
Author :
Otsubo, Koji ; Matsuda, Manabu ; Takada, Kan ; Okumura, Shigekazu ; Ekawa, Mitsuru ; Tanaka, Hiromasa ; Ide, Satoshi ; Mori, Kazuyuki ; Yamamoto, Tsuyoshi
Author_Institution :
Nanotechnol. Res. Center, Fujitsu Labs. Ltd., Atsugi
Abstract :
This paper describes 1.3-mum AlGaInAs multiple-quantum-well semi-insulating buried-heterostructure distributed-feedback lasers for high-speed direct modulation. Combination of large differential gain AlGaInAs quantum wells and semi-insulating buried-heterostructure for reduction of active region achieved 25 and 40 Gb/s direct modulation with the device having the cavity length of 150 mum. The device whose Bragg wavelength is longer than gain peak wavelength showed 25 Gb/s direct modulation characteristics with superior temperature characteristics. The relaxation oscillation frequency of this device was 15 GHz and higher up to 70degC. Clear eye-opening was observed and single-mode fiber transmission experiments showed low power penalty up to 70degC. With the device of negative detuning with larger differential gain, we achieved 40 Gb/s direct modulation. This device showed high relaxation oscillation frequency and slope of 20.5 GHz and 3.2 GHz/mA1/2, respectively. The 40 Gb/s eye opened clearly at 25degC and eye-opening was observed up to 50degC.
Keywords :
III-V semiconductors; aluminium compounds; distributed Bragg reflector lasers; gallium arsenide; high-speed optical techniques; laser beams; laser cavity resonators; laser tuning; optical fibre communication; optical modulation; quantum well lasers; AlGaInAs; Bragg wavelength; bit rate 25 Gbit/s; bit rate 40 Gbit/s; differential gain quantum well; eye-opening; frequency 15 GHz; frequency 20.5 GHz; gain peak wavelength; high-speed direct modulation; laser cavity length; multiple quantum-well DBR laser; negative detuning; relaxation oscillation frequency; semiinsulating buried heterostructure distributed-feedback laser; single-mode fiber transmission; size 150 mum; temperature 25 degC; temperature characteristics; wavelength 1.3 mum; AlGaInAs; buried heterostructure; distributed-feedback (DFB) lasers; quantum-well lasers; semi-insulating; semiconductor lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2009.2015194