arXiv · 2412.04198
Monolithic integration of blue light sources into silicon nitride photonic chips
Abstract
We investigate theoretically photonic chips with monolithically integrated blue light sources. According to our evaluations, a group-III nitride light emitting heterostructure can be efficiently combined with silicon nitride waveguiding layers. Low losses, high level of miniaturization and built-in light injection mechanism potentially make the selected platform attractive for applications and draw up an addition or even alternative to silicon photonics. We use a combination of drift-diffusion and Maxwell equations to build a model of the proposed multilayer structure. The model allows to choose the best parameters for both light emitting sandwich and waveguiding layers as well as to pick an optimal coupling regime. High transmittance coefficients are obtained. Various optimal geometries are analised with respect to captured power, desired polarization and excited modes. The obtained numbers are promising and allow in the future to pave the way towards hetero-integrated blue photonic circuits.
Explore related subjects
Keep this discovery
Ivan A. Pshenichnyuk, Muneeb Farooq, Daniil S. Zemtsov, Denis M. Zhigunov, Sergey S. Kosolobov, Vladimir P. Drachev. 2024-12-05. Monolithic integration of blue light sources into silicon nitride photonic chips. https://arxiv.org/abs/2412.04198
Cite the original work for its findings. Save a collection to share your selection of sources.