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  4. VECSEL gain characterization

VECSEL gain characterization

Author(s)
Mangold, Mario
Wittwer, Valentin  
Laboratoire temps-fréquence  
Sieber, Oliver D
Hoffmann, Martin  
Laboratoire temps-fréquence  
Krestnikov, Igor L
Livshits, Daniil A
Golling, Matthias
Südmeyer, Thomas  
Laboratoire temps-fréquence  
Keller, Ursula
Date issued
2012
In
Optics Express, Optical Society of America
Vol
20
No
4
From page
4136
To page
4148
Abstract
We present the first full gain characterization of two vertical external cavity surface emitting laser (VECSEL) gain chips with similar designs operating in the 960-nm wavelength regime. We optically pump the structures with continuous-wave (cw) 808-nm radiation and measure the nonlinear reflectivity for 130-fs and 1.4-ps probe pulses as function of probe pulse fluence, pump power, and heat sink temperature. With this technique we are able to measure the saturation behavior for VECSEL gain chips for the first time. The characterization with 1.4-ps pulses resulted in saturation fluences of 40-80 µJ/cm<sup>2</sup>, while probing with 130-fs pulses yields reduced saturation fluences of 30-50 µJ/cm<sup>2</sup> for both structures. For both pulse durations this is lower than previously assumed. A small-signal gain of up to 5% is obtained with this technique. Furthermore, in a second measurement setup, we characterize the spectral dependence of the gain using a tunable cw probe beam. We measure a gain bandwidth of over 26 nm for both structures, full width at half maximum.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/65651
DOI
10.1364/OE.20.004136
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Mangold-Vecsel_gain-20140806.pdf

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