Distributed Feedback Laser Based on Tunable Photonic Hypercrystal

Author:

Janaszek BartoszORCID,Szczepański Paweł

Abstract

In this work, we investigate the generation of light in a distributed feedback (DFB) laser composed of periodically arranged layers of hyperbolic medium and active material forming a 1D photonic hypercrystal (PHC). The scope of our study covers the analysis of laser action in the presence of different types of dispersion that are achievable in a hyperbolic medium. Using the example of a PHC structure consisting of graphene-based hyperbolic medium, we demonstrate the possibility of controlling laser action by tuning effective dispersion. Our analysis reveals the possibility of obtaining a single-frequency generation with high side-mode suppression and controllable wavelength of operation. Moreover, we present a new mechanism for the modulation of laser amplitude arising from voltage-controllable dispersion of hyperbolic medium.

Funder

Narodowe Centrum Nauki

Publisher

MDPI AG

Subject

General Materials Science

Reference47 articles.

1. Hope for photonic bandgaps

2. Photonic Crystals

3. Photonic Band Gap Materials;Soukoulis,1996

4. Advances in Photonic Crystals;Passaro,2013

5. Photonic Crystals: Fundamentals and Applications;Blanco,2006

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