Coherent waveguide laser arrays in semiconductor quantum well membranes

Author:

Woods Jonathan R. C.1ORCID,Gorecki Jon1ORCID,Bek Roman2,Richardson Stephen C.1,Daykin Jake1ORCID,Hooper Grace1,Branagan-Harris Emelia1,Tropper Anne C.1,Wilkinson James S.1ORCID,Jetter Michael3ORCID,Michler Peter3ORCID,Apostolopoulos Vasilis1ORCID

Affiliation:

1. University of Southampton

2. Twenty-One Semiconductors GmbH

3. University of Stuttgart

Abstract

Coherent laser arrays compatible with silicon photonics are demonstrated in a waveguide geometry in epitaxially grown semiconductor membrane quantum well lasers transferred on substrates of silicon carbide and oxidised silicon; we record lasing thresholds as low as 60 mW of pump power. We study the emission of single lasers and arrays of lasers in the sub-mm range. We are able to create waveguide laser arrays with modal widths of approximately 5 − 10 µm separated by 10 − 20 µm, using real and reciprocal space imaging we study their emission characteristics and find that they maintain their mutual coherence while operating on either single or multiple longitudinal modes per lasing cavity.

Funder

Engineering and Physical Sciences Research Council

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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