DocumentCode
1036592
Title
50-GHz passively mode-locked surface-emitting semiconductor laser with 100-mW average output power
Author
Lorenser, Dirk ; Maas, Deran J H C ; Unold, Heiko J. ; Bellancourt, Aude-Reine ; Rudin, Benjamin ; Gini, Emilio ; Ebling, Dirk ; Keller, Ursula
Author_Institution
Inst. of Quantum Electron., Eidgenossische Tech. Hochschule, Zurich
Volume
42
Issue
8
fYear
2006
Firstpage
838
Lastpage
847
Abstract
We have developed a passively mode-locked optically-pumped vertical-external-cavity surface-emitting semiconductor laser (VECSEL) which delivers up to 100 mW of average output power at a repetition rate of 50 GHz in nearly transform-limited 3.3-ps pulses at a wavelength around 960 nm. The high-repetition-rate passive mode locking was achieved with a low-saturation-fluence semiconductor saturable absorber mirror (SESAM) incorporating a single layer of quantum-dots. The output power within a nearly diffraction-limited beam was maximized using a gain structure with a low thermal impedance soldered to a diamond heat spreader. In addition, we systematically optimized the laser resonator to accommodate for the strong thermal lens caused by the optical pumping. We measured the thermal lens dioptric power and present a numerical model which is in good agreement with the measurements and is useful for optimizing resonator designs. The experimental setup is very versatile and its design and construction are discussed in detail
Keywords
laser beams; laser cavity resonators; laser mode locking; optical pulse generation; optical pumping; optical saturable absorption; semiconductor lasers; semiconductor quantum dots; surface emitting lasers; thermal lensing; 100 mW; 3.3 ps; 50 GHz; VECSEL; diamond heat spreader; laser resonator; optical pumping; passive mode-locking; quantum dots single layer; semiconductor saturable absorber mirror; thermal impedance; thermal lens; transform-limited pulse; vertical-external-cavity surface-emitting semiconductor laser; Laser mode locking; Lenses; Optical pumping; Optical resonators; Optical surface waves; Power generation; Power lasers; Semiconductor lasers; Surface emitting lasers; Thermal lensing; Mode locking; pulsed lasers; semiconductor lasers; thermal lens;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.2006.878183
Filename
1658136
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