Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7940229 | Superlattices and Microstructures | 2017 | 22 Pages |
Abstract
The mechanism by which the external environment affects the internal nervous system is investigated via the spatial correlation of an III-nitride synaptic device, which combines in-plane and out-of-plane illumination. The InGaN/GaN multiple-quantum-well collector (MQW-collector) demonstrates a simultaneous light emission and light detection mode due to the unique property of the MQW-diode. The MQW-collector absorbs the internal incoming light and the external illumination at the same time to generate an integration of the excitatory postsynaptic voltages (EPSVs). Signal cognition can be distinctly decoded from the integrated EPSVs because the signal differences are maintained, which is in good agreement with the simulation results. These results suggest that the nervous system can simultaneously amplify the EPSV amplitude and achieve signal cognition by spatial EPSV summation, which can be further optimized to explore the connections between the internal nervous system and the external environment.
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Authors
Shuai Zhang, Bingcheng Zhu, Zheng Shi, Jialei Yuan, Yuan Jiang, Xiangfei Shen, Wei Cai, Yongchao Yang, Yongjin Wang,