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Microwave Photonics Systems Based on Whispering-gallery-mode Resonators
Published on: August 5, 2013
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Time delay reservoir computing with a silicon microring resonator and a fiber-based optical feedback loop.
Optics Express
|June 11, 2024
Summary
Silicon microring resonators with optical feedback enable efficient time delay reservoir computing. These photonic devices achieve error-free performance on memory-intensive tasks and solve complex prediction problems, even with few virtual nodes.
Area of Science:
- Integrated photonics
- Nonlinear optics
- Neuromorphic computing
Background:
- Silicon microring resonators are key for photonic neural networks due to their size, CMOS compatibility, and nonlinear dynamics.
- Their filtering and nonlinear properties can be used for weighting and activation functions, respectively.
Purpose of the Study:
- Investigate the linear and nonlinear dynamics of microring resonators for time delay reservoir computing using optical feedback.
- Evaluate the computational capacity and performance of this system on benchmark tasks.
Main Methods:
- Implemented an external optical feedback loop with silicon microring resonators.
- Mitigated environmental noise effects on feedback phase dependencies.
- Assessed system performance on delayed-boolean tasks, Santa Fe, and Mackey Glass prediction tasks at Mbps bit rates.
Main Results:
- Optical feedback is crucial for error-free operation in tasks requiring up to 3 bits of memory, using the microring in the linear regime with photodetection as the nonlinear activation.
- Microring nonlinearities enable solving Santa Fe and Mackey Glass prediction tasks.
- Achieved competitive results with as few as 7 virtual nodes.
Conclusions:
- Silicon microring resonators demonstrate versatile performance for time delay reservoir computing with optical feedback.
- The system can be tailored for diverse computational applications by leveraging linear or nonlinear dynamics.

