An industry perspective on the optimization of InGaN lasers and LEDs via modeling

In this paper, we illustrate the role of modeling in the development of commercial nitride-based lasers and LEDs. Aside from optimizing device performance, joint analysis of simulations and experimental results can shed light into the intrinsic properties of the InGaN/GaN material system.

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Hauptverfasser: Gomez-Iglesias, A., Sabathil, M., Lermer, T., Muller, J., Galler, B., Eichler, C., Avramescu, A., Dini, D., Pietzonka, I., Tautz, S., Breidenassel, A., Bruederl, G., Lell, A., Meyer, T., Peter, M., Lutgen, S., Strauss, U., Pasenow, B., Koch, S. W., Scheibenzuber, W., Schwarz, U. T.
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creator Gomez-Iglesias, A.
Sabathil, M.
Lermer, T.
Muller, J.
Galler, B.
Eichler, C.
Avramescu, A.
Dini, D.
Pietzonka, I.
Tautz, S.
Breidenassel, A.
Bruederl, G.
Lell, A.
Meyer, T.
Peter, M.
Lutgen, S.
Strauss, U.
Pasenow, B.
Koch, S. W.
Scheibenzuber, W.
Schwarz, U. T.
description In this paper, we illustrate the role of modeling in the development of commercial nitride-based lasers and LEDs. Aside from optimizing device performance, joint analysis of simulations and experimental results can shed light into the intrinsic properties of the InGaN/GaN material system.
doi_str_mv 10.1109/NUSOD.2011.6041209
format Conference Proceeding
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Current measurement
Gain measurement
Laser modes
Light emitting diodes
Loss measurement
Materials
Waveguide lasers
title An industry perspective on the optimization of InGaN lasers and LEDs via modeling
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