神经形态工程学
光子学
计算机科学
光电二极管
灵活性(工程)
传输(电信)
可制造性设计
电子工程
材料科学
高效能源利用
纳米技术
信号处理
光电子学
人工智能
记忆电阻器
焦耳(编程语言)
能量(信号处理)
工程类
数据传输
人工神经网络
光通信
电信
冯·诺依曼建筑
硅光子学
作者
Feng Ding,Di Xue,Lifeng Chi,Lizhen Huang
出处
期刊:Nano-micro Letters
[Springer Science+Business Media]
日期:2026-01-12
卷期号:18 (1): 203-203
被引量:3
标识
DOI:10.1007/s40820-025-02036-0
摘要
The von Neumann architecture faces significant limitations, including low transmission efficiency and high energy consumption, when handling large-scale data and unstructured problems. Benefiting from the inherent merits of optical signals including high bandwidth, near-zero Joule heating, fast transmission speed, and immunity to electromagnetic interference, photonics provides a powerful pathway for high-speed neuromorphic computing. Together with the mechanical flexibility and largearea manufacturability of organic semiconductors, organic phototransistor (OPT)-based photonic synapses have therefore attracted extensive attention in recent years. This review provides a comprehensive overview of recent advances in OPT-based photonic synapses, covering operational principles, active materials, advances in bidirectional photoresponse process, as well as cutting-edge applications. Finally, the current challenges and opportunities in this field are highlighted. Distinct from previous reviews, this review emphasizes an in-depth exploration of bidirectional photoresponse mechanisms, a systematic dissection of material-structure-function correlations enabling integrated sensing-memory technology, and emerging.
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