Interferometric Optical Pumping of an InGaN/GaN-Based Gain-Coupled Distributed Feedback Multi Quantum Well Laser

Author:

Hofstetter Daniel1ORCID,Beck Hans2,Bour David P.3

Affiliation:

1. Independent Researcher, Chemin du Château 5, 2068 Hauterive, Switzerland

2. Independent Researcher, Rue des Peupliers 6, 2014 Bôle, Switzerland

3. Google LLC, 1250 Reliance Way, Fremont, CA 94539, USA

Abstract

We describe an all-optical method to achieve—prior to further advanced processing steps—a perfect match of the relevant wavelength-sensitive parameters of an InGaN/GaN semiconductor distributed feedback laser. Instead of permanently etching and epitaxially over-growing a waveguide-based diffraction grating for the definition of an index-coupled distributed feedback laser, we suggest here—by employing a powerful ultraviolet pump laser—a non-permanent, photoinduced generation of an optical diffraction grating. The resulting complex refractive index modulation then forms a gain-coupled distributed feedback laser. Such an approach has the advantage of remaining flexible as long as possible—both in terms of the correct grating period and the ideal coupling constant. This flexibility is maintained until the definitive etch and the epitaxial over-growth of the diffraction grating are completed. Such devices can—like their dye laser counterparts in the early seventies—also be used as ultra-broadly tunable single-mode sources.

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

Reference32 articles.

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3. Nishimura, K., Asakura, H., Yamauchi, S., Suzuki, T., Nakai, Y., Yamaguchi, Y., Kageyama, T., Mitaki, M., Endo, Y., and Naoe, K. (2023). Optical Fiber Communication (OFC), Optica Publishing Group.

4. InGaN-based multi-quantum-well-structure laser diodes;Nakamura;Jap. J. Appl. Phys.,1996

5. Demonstration of an InGaN/GaN-based optically pumped multiquantum well distributed-feedback laser using holographically defined third-order gratings;Hofstetter;Appl. Phys. Lett.,1998

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