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  4. 1.3-μm Mode-Locked Disk Laser With Wafer Fused Gain and SESAM Structures
 
research article

1.3-μm Mode-Locked Disk Laser With Wafer Fused Gain and SESAM Structures

Rautiainen, Jussi
•
Lyytikäinen, Jari
•
Toikkanen, Lauri
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2010
IEEE Photonics Technology Letters

We report 1.3-mu m mode-locked optically pumped semiconductor disk laser (SDL) made by wafer fusion. The gain medium and the saturable absorber, both based on an InP material system, were integrated with AlGaAs-GaAs distributed Bragg reflectors by localized wafer fusion. An intracavity wedged diamond heat spreader capillary bonded to the gain chip prevents the disruption of 6.4-ps pulse spectrum and supports 100 mW of average power. The results reveal an advantage of wafer fusion process of disparate materials over monolithically grown InP-based gain/absorber structures and demonstrate practical potential of the technique for long-wavelength SDLs.

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Type
research article
DOI
10.1109/LPT.2010.2045494
Web of Science ID

WOS:000281785800006

Author(s)
Rautiainen, Jussi
Lyytikäinen, Jari
Toikkanen, Lauri
Nikkinen, Jari
Sirbu, Alexei  
Mereuta, Alexandru  
Caliman, Andrei  
Kapon, Elyahou  
Okhotnikov, Oleg G.
Date Issued

2010

Publisher

Institute of Electrical and Electronics Engineers

Published in
IEEE Photonics Technology Letters
Volume

22

Issue

11

Start page

748

End page

750

Subjects

Mode-locked lasers

•

optical pumping

•

quantum-well (QW) lasers

•

semiconductor lasers

•

surface-emitting lasers

•

Mu-M

•

Fusion

•

Wavelength

•

Power

Editorial or Peer reviewed

REVIEWED

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June 18, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/50906
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