activity
20212024
most citedThird-order nonlinear optical response of 2D materials in the telecom band

142 citations · 375 across the 6 of their papers we have counts for

collaborators

6 papers

physics.optics202428 cited

Integrated nanophotonic polarizers in silicon waveguides and ring resonators using graphene oxide 2D films

David J. Moss

We experimentally demonstrate waveguide and microring resonator (MRR) polarizers by integrating 2D graphene oxide (GO) films onto silicon (Si) photonic devices. The 2D GO films wit…

physics.optics202482 cited

Photonic integrated circuit polarizers based on 2D materials

David J. Moss

Optical polarizers are essential components for the selection and manipulation of light polarization states in optical systems. Over the past decade, the rapid advancement of photo…

physics.optics2024142 cited

Third-order nonlinear optical response of 2D materials in the telecom band

David J. Moss

All-optical signal processing based on nonlinear optical devices is promising for ultrafast information processing in optical communication systems. Recent advances in two-dimensio…

physics.optics202442 cited

Waveguide optical parametric amplifiers in silicon nitride with 2D graphene oxide films

Yang Qu, Jiayang Wu, Yuning Zhang +10

Optical parametric amplification (OPA) represents a powerful solution to achieve broadband amplification in wavelength ranges beyond the scope of conventional gain media, for gener…

physics.optics20225 cited

Graphene oxide 2D films integrated with nanowires and ring resonators for enhanced nonlinear optics

David J. Moss

We report enhanced nonlinear optics in nanowires, waveguides, and ring resonators by introducing layered two-dimensional (2D) graphene oxide (GO) films through experimental demonst…

physics.optics202176 cited

Enhancing the third-order optical nonlinear performance in CMOS devices with integrated 2D graphene oxide films

David Moss

We report enhanced nonlinear optics in complementary metal oxide semiconductor compatible photonic platforms through the use of layered two dimensional (2D) graphene oxide (GO) fil…