神经形态工程学
计算机科学
可扩展性
可积系统
计算机体系结构
材料科学
过程(计算)
实施
人工神经网络
人工智能
尖峰神经网络
GSM演进的增强数据速率
边缘计算
机制(生物学)
钥匙(锁)
边缘设备
纳米技术
运动系统
转导(生物物理学)
电子工程
运动(物理)
范围(计算机科学)
计算机硬件
作者
Li Qiu,Cong Shan,Song Wang,Haigen Xiong,Qijie Lin,Yincheng Zhang,Hao Chen,Hui Huang
摘要
Neuromorphic vision systems process information directly at the sensor front end, offering a promising hardware pathway for next-generation machine vision. However, current implementations are typically restricted to single functions and rely on device mechanisms that limit scalability, uniformity and miniaturization, highlighting the need for multifunctional and integrable neuromorphic hardware. Herein, we introduce a photo-regulated doping strategy enabled by galvinoxyl radicals (GX) as wavelength-dependent bipolar dopants, in which radical-mediated charge transfer enables wavelength-dependent optical switching between excitatory and inhibitory responses within a single-layer neuromorphic device. This mechanism supports high photoresponse and programmable synaptic dynamics, allowing the construction of a large‑scale (256 × 256) neuromorphic vision system that integrates dynamic motion detection, spatiotemporal memory, and contrast-enhanced edge extraction. This work provides a potent hardware solution for complex dynamic scenarios, establishing a scalable pathway toward fully integrated, high-performance neuromorphic vision system.
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