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Bio-inspired synaptic functions from a transparent zinc-tin-oxide-based memristor for neuromorphic engineering

机译:生物启发来自透明锌锡氧化锡的椎间膜的神经晶体工程的突触功能

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In this work, ITO/ZTO/ITO transparent resistive memory was fabricated using a fully industrialized sputtering process. We investigate how the electrical properties correspond to biological synaptic characteristics to utilize the device in neuromorphic system. The optical transmittance was over 70% for all wavelengths in the visible region. Especially, it had the highest transparency of 87.1% at 710 nm. Among the diverse electrical measurements conducted on the device, the transient pulse responses with gradual switching is suitable for use in a hardware-based neuromorphic system. The synaptic characteristics in the device include paired-pulse facilitation (PPF) as well as long- and short-term memory plasticity determined by the type of input. The iso-surface charge density, integrated charge density, and Bader charge analysis were conducted to confirm the changes in conductivity of the ITO/ZTO/ITO structure that occurred with and without oxygen vacancies. Moreover, the pattern recognition was carried out by considering the conductance values of the measured data as the synaptic part of neuromorphic engineering.
机译:在这项工作中,使用完全工业化的溅射工艺制造ITO / ZTO / ITO透明电阻存储器。我们调查电性能如何对应于生物突触特性以利用神经族系统中的装置。对于可见区域中的所有波长,光学透射率超过70%。特别是,它的透明度最高为87.1%,在710 nm处。在该装置上进行的多样电测量中,具有渐进式切换的瞬态脉冲响应适用于基于硬件的神经形态系统。该装置中的突触特性包括配对脉冲促进(PPF)以及由输入类型确定的长和短期存储器可塑性。进行ISO-表面电荷密度,集成电荷密度和獾分析,以确认ITO / ZTO / ITO结构的导电性变化,而没有氧空位。此外,通过将测量数据的电导值视为神经形态工程的突触部分来进行模式识别。

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