神经形态工程学
材料科学
单层
突触可塑性
可塑性
纳米技术
神经科学
复合材料
计算机科学
人工神经网络
心理学
人工智能
生物化学
化学
受体
作者
Federico Ferrarese Lupi,Gianluca Milano,Angelo Angelini,Mateo Rosero‐Realpe,Bruno Torre,Erika Kozma,Christian Martella,Carlo Grazianetti
标识
DOI:10.1002/adfm.202403158
摘要
Abstract Neuromorphic computing aims to leverage physical phenomena of adaptive materials for emulating information processing capabilities and effectiveness of biological neuronal circuits. In this framework, memristors (resistors with memory) based on 2D materials are demonstrated for the hardware implementation of highly integrated artificial neural networks. All the works reported thus far exploited electrical properties of 2D materials to emulate neuromorphic functionalities. Here, a 2D memitter (emitter with memory) is reported on that exploits the stimuli‐responsive photoluminescence of a monolayer WS 2 for neuromorphic‐type of data processing. A combined experimental and modeling approach reveals that photoluminescent dynamics triggered by optical stimulation emulates Short‐Term synaptic Plasticity and Visual Short‐Term Memory typical of biological systems. While spatio‐temporal processing capabilities of input signals can be used for information processing in the context of reservoir computing, the capability of the 2D memitter of sensing, processing, and memorizing‐forgetting optical inputs in the same physical substrate can be utilized for in‐sensor computing.
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