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Graphene-oxide interface for optoelectronic synapse application

delete2022-04-07
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AI
R
Ricardo Martínez-Martínez
M
Molla Manjurul Islam
A
Adithi Krishnaprasad
T
Tania Roy *
DOI:10.1038/s41598-022-09873-8delete
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摘要

摘要

En 中文
Optoelectronic synapses combine the functionalities of a non-volatile memory and photodetection in the same device, paving the path for the realization of artificial retina systems which can capture, pre-process, and identify images on the same platform. Graphene/Ta2O5/graphene phototransistor exhibits synapse characteristics when visible electromagnetic radiation of wavelength 405 nm illuminates the device. The photocurrent is retained after light withdrawal when positive gate voltage is applied to the device. The device exhibits distinct conductance states, modulated by different parameters of incident light, such as pulse width and number of pulses. The conductance state can be retained for 10(4) s, indicating long term potentiation (LTP), similar to biological synapses. By using optical and electrical pulses, the device shows optical potentiation and electrical LTD repeatably, implying their applicability in neural networks for pattern recognition.
Keyword:
TA2O5 THIN-FILMS
INFRARED PHOTODETECTORS
TANTALUM PENTOXIDE
PERFORMANCE
NETWORK
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期刊

Scientific Reports 封面图
Scientific Reports
IF:
3.9
论文数:
27.8W
被引数:
83.5W

机构

State University System of Florida 封面图
State University System of Florida
学者数:
12.7W
论文数: 10.9W
被引数: 130