Polariton lasing in AlGaN microring with GaN/AlGaN quantum wells

Author:

Delphan Anthonin1ORCID,Makhonin Maxim N.1ORCID,Isoniemi Tommi1ORCID,Walker Paul M.1ORCID,Skolnick Maurice S.1ORCID,Krizhanovskii Dmitry N.1ORCID,Skryabin Dmitry V.2,Carlin Jean-François3ORCID,Grandjean Nicolas3ORCID,Butté Raphaël3ORCID

Affiliation:

1. Department of Physics and Astronomy, University of Sheffield 1 , Sheffield S3 7RH, United Kingdom

2. Department of Physics, University of Bath 2 , Claverton Down, Bath BA2 7AY, United Kingdom

3. Institute of Physics, École Polytechnique Fédérale de Lausanne (EPFL) 3 , CH-1015 Lausanne, Switzerland

Abstract

Microcavity polaritons are strongly interacting hybrid light–matter quasiparticles, which are promising for the development of novel light sources and active photonic devices. Here, we report polariton lasing in the UV spectral range in microring resonators based on GaN/AlGaN slab waveguides, with experiments carried out from 4 K up to room temperature. Stimulated polariton relaxation into multiple ring resonator modes is observed, which exhibit threshold-like dependence of the emission intensity with pulse energy. The strong exciton-photon coupling regime is confirmed by the significant reduction of the free spectral range with energy and the blueshift of the exciton–like modes with increasing pulse energy. Importantly, the exciton emission shows no broadening with power, further confirming that lasing is observed at electron–hole densities well below the Mott transition. Overall, our work paves the way toward the development of novel UV devices based on the high-speed slab waveguide polariton geometry operating up to room temperature with the potential to be integrated into complex photonic circuits.

Funder

Engineering and Physical Sciences Research Council

Publisher

AIP Publishing

Subject

Computer Networks and Communications,Atomic and Molecular Physics, and Optics

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