中文版 | English
Title

Flexible Dispersion Engineering in Thin GaP-OI Frequency Comb Resonator Design

Author
DOI
Publication Years
2022-12-06
Conference Name
2022 IEEE 7th Optoelectronics Global Conference (OGC)
ISBN
978-1-6654-8699-6
Source Title
Pages
218-221
Conference Date
6-11 Dec. 2022
Conference Place
Shenzhen, China
Abstract

Thickness-constrained waveguides enable ultralow loss photonics while suffering severe chromatic issues nowadays. We present a concentric ring configuration to reduce the dispersion requirements for the core waveguide thickness. This approach employs a second ring to squeeze light into additional anti-bonding modes to manifest the dispersion profile with lateral coupling parameters such as the 2nd ring width as well as the gap size. We then applied this method to a 200 nm-thick SiO2-passivated concentric coupled GaP-OI resonator design for Kerr soliton frequency comb generation which gives rise to an anomalous dispersion span of 150 nm. The dispersion profile could be further optimized by changing the gap of the coupled rings, demonstrating the design flexibility. Our concentric microrings approach can find anomalous dispersions on thickness-constrained materials, opening the possibilities for novel integrated nonlinear photonic applications.

Keywords
SUSTech Authorship
First
URL[Source Record]
Data Source
IEEE
PDF urlhttps://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=10050979
Citation statistics
Cited Times [WOS]:0
Document TypeConference paper
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/502064
DepartmentSUSTech Institute of Microelectronics
Affiliation
School of Microelectronics, Southern University of Science and Technology, Shenzhen, China
First Author AffilicationSUSTech Institute of Microelectronics
First Author's First AffilicationSUSTech Institute of Microelectronics
Recommended Citation
GB/T 7714
Zhaoting Geng,Houling Ji,Zhuoyu Yu,et al. Flexible Dispersion Engineering in Thin GaP-OI Frequency Comb Resonator Design[C],2022:218-221.
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