Chirped photonic crystal for spatially filtered optical feedback to a broad-area laser

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Date
2018
Volume
2502
Issue
Journal
Series Titel
Book Title
Publisher
Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik
Abstract

We derive and analyze an efficient model for reinjection of spatially filtered optical feedback from an external resonator to a broad area, edge emitting semiconductor laser diode. Spatial filtering is achieved by a chirped photonic crystal, with variable periodicity along the optical axis and negligible resonant backscattering. The optimal chirp is obtained from a genetic algorithm, which yields solutions that are robust against perturbations. Extensive numerical simulations of the composite system with our optoelectronic solver indicate that spatially filtered reinjection enhances lower-order transversal optical modes in the laser diode and, consequently, improves the spatial beam quality.

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Keywords
External resonators, periodic structure, rigorous coupled wave analysis, inverse scattering problems, semiconductor laser diodes
Citation
Brée, C., Gailevicius, D., Purlys, V., Werner, G. G., Staliunas, K., Rathsfeld, A., et al. (2018). Chirped photonic crystal for spatially filtered optical feedback to a broad-area laser (Vol. 2502). Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik. https://doi.org//10.20347/WIAS.PREPRINT.2502
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