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Experimental Study of the Lasing Modes of 1.3- $\mu$ m Highly Strained InGaAs-GaAs Quantum-Well Oxide-Confined VCSELs

We present an experimental study of the main modes involved in the emission properties of InGaAs-GaAs quantum-well oxide-confined long wavelength vertical-cavity surface-emitting lasers. Lasing properties are dominated by the so-called "oxide modes" and by aperture modes, respectively, for...

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Published in:IEEE photonics technology letters 2009-03, Vol.21 (6), p.377-379
Main Authors: Pougeoise, E., Gilet, P., Grosse, P., Grenouillet, L., Chelnokov, A., Gerard, J.-M., Bouillard, J.-S., Lerondel, G., Blaize, S., Vilain, S., Bachelot, R., Royer, P., Hamelin, R., Berggren, J., Sundgren, P., Hammar, M.
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container_end_page 379
container_issue 6
container_start_page 377
container_title IEEE photonics technology letters
container_volume 21
creator Pougeoise, E.
Gilet, P.
Grosse, P.
Grenouillet, L.
Chelnokov, A.
Gerard, J.-M.
Bouillard, J.-S.
Lerondel, G.
Blaize, S.
Vilain, S.
Bachelot, R.
Royer, P.
Hamelin, R.
Berggren, J.
Sundgren, P.
Hammar, M.
description We present an experimental study of the main modes involved in the emission properties of InGaAs-GaAs quantum-well oxide-confined long wavelength vertical-cavity surface-emitting lasers. Lasing properties are dominated by the so-called "oxide modes" and by aperture modes, respectively, for small and large driving currents. We present complementary investigations of the laser emission including far-field angular distribution and spectroscopic near-field optical microscopy to a better understanding of the nature of the "oxide modes".
doi_str_mv 10.1109/LPT.2008.2012170
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source IEEE Electronic Library (IEL) Journals
subjects Conferences
Emission analysis
Emission spectroscopy
Engineering Sciences
Fiber optics
Lasing
Optical fibers
Optics
Oxides
Photonic
Quantum wells
title Experimental Study of the Lasing Modes of 1.3- $\mu$ m Highly Strained InGaAs-GaAs Quantum-Well Oxide-Confined VCSELs
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