collaborators

7 papers

physics.optics2026

AI assisted optimization of integrated waveguide polarizers containing 2D reduced graphene oxide

Rong Wang, Yijun Wang, Di Jin +7

Reduced graphene oxide (rGO) exhibits strong anisotropic light absorption and high compatibility with photonic integrated chips, making it a promising material for implementing hig…

physics.optics2026

AI based design of 2D material integrated optical polarizers

Rong Wang, Di Jin, Junkai Hu +8

On-chip integration of highly anisotropic two-dimensional (2D) materials offers new opportunities for realizing high performance polarization selective devices. Obtaining optimized…

physics.optics2026

Enhanced selfphase modulation in silicon nitride waveguides with integrated 2D MoS2 films

Shahaz S. Hameed, Di Jin, Aihao Zhao +9

On-chip integration of 2D materials provides a promising route towards next-generation integrated optical devices with performance beyond existing limits. Here, significantly enhan…

physics.optics2025

Silicon Integrated Photonic Waveguide Polarizers with 2D MoS2 Films

Junkai Hu, Jiayang Wu, Irfan H. Abidi +7

Polarization control is of fundamental importance for modern optical systems, and optical polarizers serve as critical components for enabling this functionality. Here, we experime…

physics.optics2025

Integrated photonics incorporating 2D materials for practical applications

David J. Moss

On-chip integration of 2D materials with exceptional optical properties provides an attractive solution for next-generation photonic integrated circuits to address the limitations…

physics.optics2025

Modeling of photonic integrated resonators using advanced scattering matrix methods

David J. Moss

We propose a universal approach for modeling complex integrated photonic resonators based on the scattering matrix method. By dividing devices into basic elements including directi…