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Performing optical logic operations by a diffractive neural network

         

摘要

Optical logic operations lie at the heart of optical computing,and they enable many applications such as ultrahighspeed information processing.However,the reported optical logic gates rely heavily on the precise control of input light signals,including their phase difference,polarization,and intensity and the size of the incident beams.Due to the complexity and difficulty in these precise controls,the two output optical logic states may suffer from an inherent instability and a low contrast ratio of intensity.Moreover,the miniaturization of optical logic gates becomes difficult if the extra bulky apparatus for these controls is considered.As such,it is desirable to get rid of these complicated controls and to achieve full logic functionality in a compact photonic system.Such a goal remains challenging.Here,we introduce a simple yet universal design strategy,capable of using plane waves as the incident signal,to perform optical logic operations via a diffractive neural network.Physically,the incident plane wave is first spatially encoded by a specific logic operation at the input layer and further decoded through the hidden layers,namely,a compound Huygens’metasurface.That is,the judiciously designed metasurface scatters the encoded light into one of two small designated areas at the output layer,which provides the information of output logic states.Importantly,after training of the diffractive neural network,all seven basic types of optical logic operations can be realized by the same metasurface.As a conceptual illustration,three logic operations(NOT,OR,and AND)are experimentally demonstrated at microwave frequencies.

著录项

  • 来源
    《光:科学与应用(英文版)》 |2020年第1期|1448-1454|共7页
  • 作者单位

    Interdisciplinary Center for Quantum Information;

    State Key Laboratory of Modern Optical Instrumentation;

    College of Information Science and Electronic Engineering;

    Zhejiang University;

    310027 Hangzhou;

    China;

    ZJU-Hangzhou Global Science and Technology Innovation Center;

    Key Lab.of Advanced Micro/Nano Electronic Devices&Smart Systems of Zhejiang;

    Zhejiang University;

    310027 Hangzhou;

    China;

    Department of Electrical Engineering;

    California Institute of Technology;

    Pasadena;

    CA;

    USA;

    ZJU-UIUC Institute;

    Zhejiang University;

    310027 Hangzhou;

    China;

    Division of Physics and Applied Physics;

    School of Physical and Mathematical Sciences;

    Nanyang Technological University;

    Singapore 637371;

    Singapore;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 光学;
  • 关键词

    surface; operations; precise;

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