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Data-driven gain equalization for few-mode erbium-doped waveguide amplifiers using deep neural networks
Optics Express
|August 14, 2026
Summary
We developed a novel method to optimize few-mode erbium-doped waveguide amplifiers (FM-EDWAs) for six-mode amplification. This approach enhances gain equalization and crosstalk suppression for high-capacity mode-division multiplexing systems.
Area of Science:
- Photonics and Optical Engineering
- Materials Science
- Computational Electromagnetics
Background:
- Few-mode erbium-doped waveguide amplifiers (FM-EDWAs) are crucial for high-capacity optical communication.
- Optimizing FM-EDWAs is challenging due to complex interdependencies between structural parameters and performance metrics.
- Existing methods struggle to integrate gain equalization and crosstalk suppression into a unified design framework.
Purpose of the Study:
- To propose a joint multi-objective optimization method for designing six-mode FM-EDWAs.
- To establish a precise mapping between waveguide structural parameters and key performance indicators.
- To simultaneously optimize average gain, differential mode gain, and crosstalk.
Main Methods:
- Integration of a Transformer model with an improved Non-dominated Sorting Genetic Algorithm II (NSGA-II).
- Development of a unified optimization framework for waveguide structural parameters and performance metrics.
- Simulation and analysis of a six-mode amplification device under single LP01 pumping.
Main Results:
- Achieved balanced amplification across six spatial modes (LP01, LP11a, LP11b, LP21a, LP21b, LP02).
- Optimized device exhibits an average gain of 21.84 dB and a differential mode gain of 0.84 dB.
- Demonstrated crosstalk suppression below -22.6 dB at 1550 nm, confirming effective mode crosstalk mitigation.
Conclusions:
- The proposed method effectively designs FM-EDWAs with simultaneous optimization of gain and crosstalk.
- This work provides significant advancements for on-chip multimode amplifier design.
- The findings pave the way for enhanced high-capacity mode-division multiplexing systems.
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