Title :
An Eight-Wavelength BH DFB Laser Array With Equivalent Phase Shifts for WDM Systems
Author :
Jingsi Li ; Song Tang ; Wang, Jiacheng ; Yue Liu ; Xiangfei Chen ; Julian Cheng
Author_Institution :
Dept. of Electr. Eng., Univ. of Texas at Austin, Austin, TX, USA
Abstract :
In this letter, we report an eight-wavelength monolithically integrated buried heterostructure distributed feedback laser array with quarter-wave equivalent phase shifts. The laser array operating at 1.3 μm has a chip size of 2 mm × 250 μm. Lasing channel spacing is designed to be 800 GHz (~4.6 nm at 1.3 μm). The laser array exhibits accurate wavelength control and stable single mode lasing operation over a wide range of injection currents and different ambient temperatures. The measured linewidth of these lasers is 278 kHz at 65-mA bias current. In addition, the lasing wavelength of the whole laser array can be tuned continuously over 38.3 nm without mode hopping. The proposed method offers a practical approach of integrated laser array fabrication for wavelength-division multiplexing systems.
Keywords :
distributed feedback lasers; integrated optics; laser modes; optical communication equipment; optical control; optical phase shifters; optical retarders; semiconductor laser arrays; wavelength division multiplexing; WDM system; ambient temperatures; bias current; chip size; current 65 mA; eight-wavelength BH DFB laser array; eight-wavelength monolithically integrated buried heterostructure distributed feedback laser array; frequency 278 kHz; frequency 800 GHz; injection currents; integrated laser array fabrication; laser linewidth; lasing channel spacing; lasing wavelength; mode hopping; quarter-wave equivalent phase shifts; size 2 mm; size 250 mum; stable single mode lasing operation; wavelength 1.3 mum; wavelength 38.3 nm; wavelength control; wavelength-division multiplexing systems; Arrays; Distributed feedback devices; Gratings; Laser modes; Laser tuning; Semiconductor laser arrays; Distributed feedback laser; photonic integrated circuits; semiconductor laser arrays; wavelength division multiplexing;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2014.2327113