DocumentCode :
1293089
Title :
Injection-Locking Properties of InAs/InP-Based Mode-Locked Quantum-Dash Lasers at 21 GHz
Author :
Sooudi, Ehsan ; Huyet, G. ; McInerney, J.G. ; Lelarge, F. ; Merghem, K. ; Rosales, R. ; Martinez, A. ; Ramdane, A. ; Hegarty, S.P.
Author_Institution :
Dept. of Phys., Univ. Coll. Cork, Cork, Ireland
Volume :
23
Issue :
20
fYear :
2011
Firstpage :
1544
Lastpage :
1546
Abstract :
We report optical injection-locking in 21-GHz single-section and two-section InAs/InP 1.5-μm quantum-dash mode-locked lasers. Two distinct mode-locked regimes were observed and successfully locked to the optically injected light. The single-section laser only operates as a self-mode-locked laser while the two-section laser could operate as both a self-mode-locked laser and saturable-absorber dominated mode-locked laser. The continuous-wave (CW) injection-locked self-mode-locked laser shows wide tuning of the mode-locked frequency (≈270 MHz) within the locking range. The CW injection-locked saturable-absorber dominated mode-locked laser demonstrates wide optical spectrum, and 5.5 × reduction in the time-bandwidth product of the pulses. Using dual-mode injection, strong reduction of timing jitter ( ≈235 fs) is possible leading to the generation of a wide coherent frequency comb. Coherence between all the modes and the master laser is confirmed by measuring the RF beat note of each mode with a narrow linewidth laser.
Keywords :
III-V semiconductors; indium compounds; laser mode locking; optical saturable absorption; quantum dash lasers; timing jitter; InAs-InP; RF beat note; coherent frequency comb; dual-mode injection; frequency 21 GHz; injection-locking; locking range; master laser; mode-locked quantum-dash lasers; saturable absorber dominated mode-locked laser; timing jitter; wavelength 1.5 mum; Injection-locked oscillators; Laser mode locking; Optical mixing; Optical pulses; Quantum dots; Radio frequency; Semiconductor lasers; Injection-locked oscillators; microwave oscillators; mode-locked lasers; optical frequency combs; quantum-dash lasers;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2011.2164058
Filename :
5978182
Link To Document :
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