Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Dispersion Optimization of Silicon Nitride Waveguides for Efficient Four-Wave Mixing

View through CrossRef
Silicon nitride waveguides have emerged as an excellent platform for photonic applications, including nonlinear optical signal processing, owing to their relatively high Kerr nonlinearity, negligible two photon absorption, and wide transparent bandwidth. In this paper, we propose an effective approach using 3D finite element method to optimize the dispersion characteristics of silicon nitride waveguides for four-wave mixing (FWM) applications. Numerical studies show that a flat and low dispersion profile can be achieved in a silicon nitride waveguide with the optimized dimensions. Near-zero dispersion of 1.16 ps/km/nm and 0.97 ps/km/nm at a wavelength of 1550 nm are obtained for plasma-enhanced chemical vapor deposition (PECVD) and low-pressure chemical vapor deposition (LPCVD) silicon nitride waveguides, respectively. The fabricated micro-ring resonator with the optimized dimensions exhibits near-zero dispersion of −0.04 to −0.1 ps/m/nm over a wavelength range of 130 nm which agrees with the numerical simulation results. FWM results show that near-zero phase mismatch and high conversion efficiencies larger than −12 dB using a low pump power of 0.5 W in a 13-cm long silicon nitride waveguide are achieved.
Title: Dispersion Optimization of Silicon Nitride Waveguides for Efficient Four-Wave Mixing
Description:
Silicon nitride waveguides have emerged as an excellent platform for photonic applications, including nonlinear optical signal processing, owing to their relatively high Kerr nonlinearity, negligible two photon absorption, and wide transparent bandwidth.
In this paper, we propose an effective approach using 3D finite element method to optimize the dispersion characteristics of silicon nitride waveguides for four-wave mixing (FWM) applications.
Numerical studies show that a flat and low dispersion profile can be achieved in a silicon nitride waveguide with the optimized dimensions.
Near-zero dispersion of 1.
16 ps/km/nm and 0.
97 ps/km/nm at a wavelength of 1550 nm are obtained for plasma-enhanced chemical vapor deposition (PECVD) and low-pressure chemical vapor deposition (LPCVD) silicon nitride waveguides, respectively.
The fabricated micro-ring resonator with the optimized dimensions exhibits near-zero dispersion of −0.
04 to −0.
1 ps/m/nm over a wavelength range of 130 nm which agrees with the numerical simulation results.
FWM results show that near-zero phase mismatch and high conversion efficiencies larger than −12 dB using a low pump power of 0.
5 W in a 13-cm long silicon nitride waveguide are achieved.

Related Results

Atmospheric waveguides, quasi-stationary waves, and temperature extremes
Atmospheric waveguides, quasi-stationary waves, and temperature extremes
Atmospheric waveguides can affect the propagation of Rossby waves, and have been hypothesized to be associated with amplified quasi-stationary waves and thus to extreme weather eve...
Dispersion of Strengthening Particles on the Nickel-Iron-Silicon Nitride Nanocomposite Coating
Dispersion of Strengthening Particles on the Nickel-Iron-Silicon Nitride Nanocomposite Coating
Nickel-iron-silicon nitride nanocomposite coatings were prepared by electrodeposition technique. The deposition was performed at current density of 11.5 A dm-2. Nano-size silicon n...
Investigation of Kerr nonlinearity in multi-layered silicon nitride waveguides
Investigation of Kerr nonlinearity in multi-layered silicon nitride waveguides
Silicon nitride is a promising waveguide platform for harnessing Kerr nonlinearity due to the low propagation loss, wide transparency range, and negligible two-photon absorption ef...
Investigation of Kerr nonlinearity in multi-layered silicon nitride waveguides
Investigation of Kerr nonlinearity in multi-layered silicon nitride waveguides
Silicon nitride is a promising waveguide platform for harnessing Kerr nonlinearity due to the low propagation loss, wide transparency range, and negligible two-photon absorption ef...
Hurricane Eloise Directional Wave Energy Spectra
Hurricane Eloise Directional Wave Energy Spectra
ABSTRACT Directiona1 wave energy spectra, calculated from data recorded during Hurricane Eloise (Gulf of Mexico, 1975), are presented. The spectra, based on an en...
Theoretical Study of FWM in Silicon Nitride Waveguides Integrated with Graphene Oxide Films
Theoretical Study of FWM in Silicon Nitride Waveguides Integrated with Graphene Oxide Films
We theoretically investigate and optimize four-wave mixing (FWM) in silicon nitride (SiN) waveguides integrated with two-dimensional (2D) layered graphene oxide (GO) films. Based o...
Dispersion Compensation in Optical Fiber: A Review
Dispersion Compensation in Optical Fiber: A Review
A cylindrical-shaped dielectric waveguide is what an optical fiber is. The core-cladding interface confines light, as electromagnetic (EM) energy, within its surface and guides lig...
Wave Force Calculations for Stokes and Non-Stokes Waves
Wave Force Calculations for Stokes and Non-Stokes Waves
ABSTRACT A new wave particle velocity procedure permits calculation of forces from regular wave profiles of more or less arbitrary wave crest to height ratios, as...

Back to Top