| Literature DB >> 31052835 |
Yi Zheng, Minhao Pu, Ailun Yi, Bingdong Chang, Tiangui You, Kai Huang, Ayman N Kamel, Martin R Henriksen, Asbjørn A Jørgensen, Xin Ou, Haiyan Ou.
Abstract
Silicon carbide (SiC) exhibits promising material properties for nonlinear integrated optics. We report on a SiC-on-insulator platform based on crystalline 4H-SiC and demonstrate high-confinement SiC microring resonators with sub-micron waveguide cross-sectional dimensions. The Q factor of SiC microring resonators in such a sub-micron waveguide dimension is improved by a factor of six after surface roughness reduction by applying a wet oxidation process. We achieve a high Q factor (73,000) for such devices and show engineerable dispersion from normal to anomalous dispersion by controlling the waveguide cross-sectional dimension, which paves the way toward nonlinear applications in SiC microring resonators.Entities:
Year: 2019 PMID: 31052835 DOI: 10.1364/OE.27.013053
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894