研究目的
To investigate the spike encoding properties of two polarization-resolved modes in vertical-cavity surface-emitting laser with an embedded saturable absorber (VCSEL-SA) and explore the potential for dual-channel polarization-multiplexed spike encoding in a single VCSEL-SA for ultrafast photonic neuromorphic systems and brain-inspired information processing.
研究成果
The study demonstrates that EIOPs can be encoded into spikes in XP mode, YP mode, or both in a single VCSEL-SA, with the encoding properties influenced by EIOP strength, amplitude anisotropy, and pump currents, but not by phase anisotropy. The proposed polarization-resolved and polarization-multiplexed spike encoding schemes are novel and valuable for the development of ultrafast photonic neuromorphic systems and brain-inspired photonic information processing.
研究不足
The study is based on numerical simulations, and the practical implementation of the proposed schemes in real-world applications may face challenges such as noise, fabrication imperfections, and integration with existing photonic systems.