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Dual-mode optical 2-to-4 decoder based on cascaded microring resonators
Optics Express
|August 14, 2026
Summary
Researchers developed a 2-to-4 optical decoder using silicon microring resonators. This device converts electrical inputs to optical outputs, crucial for photonic integration and networks.
Area of Science:
- Photonics and Optical Engineering
- Integrated Optics
- Silicon Photonics
Background:
- Optical decoders are essential for on-chip photonic integration, acting as logical hubs.
- Microring resonators (MRRs) are key components in integrated photonic circuits due to their resonant properties.
Purpose of the Study:
- To theoretically design and experimentally demonstrate a 2-to-4 optical decoder using cascaded silicon waveguide microring resonators.
- To leverage optical directed logic for converting electrical inputs to optical outputs.
Main Methods:
- Cascaded silicon waveguide microring resonators (MRRs) were designed and fabricated.
- Thermal tuning was employed to optimize the decoder's performance.
- Optical directed logic principles were utilized for device functionality.
Main Results:
- A functional 2-to-4 optical decoder was successfully demonstrated.
- A minimum signal-to-noise ratio of 15.56 dB was achieved at 1550.75 nm.
- The device exhibits dual-mode operation compatible with MRR switch arrays.
Conclusions:
- The demonstrated silicon MRR-based optical decoder is a viable component for on-chip photonic integration.
- The device supports seamless integration into larger photonic networks for applications like address decoding and routing control.
- This work advances the development of integrated photonic logic devices.
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