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Using Active Surface Plasmons in a Multibit Optical Storage Device to Emulate Long-Term Synaptic Plasticity

机译:在多维测光学存储装置中使用活性表面等离子体以模拟长期突触可塑性

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摘要

Artificial intelligence takes inspiration from the functionalities and structure of the brain to solve complex tasks and allow learning. Yet, hardware realization that simulates the synaptic activities realized with electrical devices still lags behind computer software implementation, which has improved significantly during the past decade. Herein, the capability to emulate synaptic functionalities by exploiting surface plasmon polaritons (SPPs) is shown. By depositing photochromic switching molecules (diarylethene) on a thin film of gold, it is possible to reliably control the electronic configuration of the molecules upon illumination cycles with UV and visible light. These reversible changes modulate the dielectric function of the photochromic film and thus enable the effective control of the SPP dispersion relation at the molecule/gold interface. The plasmonic device displays fundamental functions of a synapse such as potentiation, depression, and longterm plasticity. The integration of such plasmonic devices in an artificial neural network is deployed in plasmonic neuroinspired circuits for optical computing and data transmission.
机译:人工智能从大脑的功能和结构中获取灵感来解决复杂的任务并允许学习。然而,模拟用电气设备实现的突触活动的硬件实现仍然滞后于计算机软件实现,这在过去十年中有所提高。这里,示出了通过利用表面等离子体极性官(SPP)来模拟突触功能的能力。通过将光致变色切换分子(二芳基乙烯)沉积在金的薄膜上,可以在用UV和可见光的照明循环时可靠地控制分子的电子配置。这些可逆变化调节光致变色膜的介质功能,从而使得能够有效地控制分子/金界面处的SPP色散关系。等离子体器件显示突触的基本功能,例如增强,抑郁和长期可塑性。这种等离子体装置在人工神经网络中的集成部署在用于光学计算和数据传输的等离子体神经透明度电路中。

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  • 来源
    《Physica status solidi (a) Applications and materials science》 |2020年第20期|2000354.1-2000354.5|共5页
  • 作者单位

    Institut fuer Physik Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 6 12489 Berlin Germany;

    Institut fuer Physik Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 6 12489 Berlin Germany;

    Institut fuer Physik Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 6 12489 Berlin Germany;

    Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 2 12489 Berlin Germany;

    Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 2 12489 Berlin Germany;

    Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 2 12489 Berlin Germany DWI - Leibniz-Institut fuer interaktive Materialien e.V. RWTH Aachen University Forckenbeckstrasse 50 52056 Aachen Germany Institut fuer Technische und Makromolekulare Chemie RWTH Aachen University Worringerweg 2 52074 Aachen Germany;

    Institut fuer Physik Institut fuer Chemie & IRIS Adlershof Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 6 12489 Berlin Germany Helmholtz-Zentrum fuer Materialien und Energie GmbH Brook-Taylor-Strasse 6 12489 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    artificial intelligence; long-term plasticities; surface plasmon polaritons; switching molecules;

    机译:人工智能;长期塑性;表面等离子体极化膜;切换分子;

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