Time-domain simulations of nonlinear interaction in microring resonators using finite-difference and coupled mode techniques
Author:
Funder
Semiconductor Research Corporation (SRC)
U.S. Department of Energy (DOE)
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference28 articles.
1. Optical frequency comb generation from a monolithic microresonator
2. Hybrid Electro-Optically Modulated Microcombs
3. Generation of optical frequency combs with a CaF_2 resonator
4. Very High-Order Microring Resonator Filters for WDM Applications
5. Microring-resonator-based add-drop filters in SiN: fabrication and analysis
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1. Combining FDTD and coupled-mode theory for self-pulsing modeling in coupled nonlinear microring resonators;Journal of the Optical Society of America B;2020-08-06
2. Simulation of mode lock lasers using microring resonators integrated with InGaAsP saturable absorbers;Indian Journal of Physics;2017-05-29
3. Metasurfaces with Fano resonances for directionally selective thermal emission;MRS Advances;2016-07-20
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