• Photonics Research
  • Vol. 10, Issue 2, 316 (2022)
Zihan Zhao1、2、†, Yue Wang1、†, Xumin Ding1、4、*, Haoyu Li1、5、*, Jiahui Fu2, Kuang Zhang2、6、*, Shah Nawaz Burokur3、7、*, and Qun Wu2
Author Affiliations
  • 1Advanced Microscopy and Instrumentation Research Center, School of Instrumentation Science and Engineering, Harbin Institute of Technology, Harbin 150080, China
  • 2Department of Microwave Engineering, Harbin Institute of Technology, Harbin 150001, China
  • 3LEME, UPL, Univ Paris Nanterre, F92410 Ville d’Avray, France
  • 4e-mail: xuminding@hit.edu.cn
  • 5e-mail: lihaoyu@hit.edu.cn
  • 6e-mail: zhangkuang@hit.edu.cn
  • 7e-mail: sburokur@parisnanterre.fr
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    DOI: 10.1364/PRJ.439036 Cite this Article Set citation alerts
    Zihan Zhao, Yue Wang, Xumin Ding, Haoyu Li, Jiahui Fu, Kuang Zhang, Shah Nawaz Burokur, Qun Wu. Compact logic operator utilizing a single-layer metasurface[J]. Photonics Research, 2022, 10(2): 316 Copy Citation Text show less

    Abstract

    In this paper, we design and demonstrate a compact logic operator based on a single-layer metasurface at microwave frequency. By mapping the nodes in the trained fully connected neural network (FCNN) to the specific unit cells with phase control function of the metasurface, a logic operator with only one hidden layer is physically realized. When the incident wave illuminates specific operating regions of the metasurface, corresponding unit cells are activated and can scatter the incident wave to two designated zones containing logical information in the output layer. The proposed metasurface logic operator is experimentally verified to achieve three basic logic operations (NOT, OR, and AND) under different input signals. Our design shows great application potential in compact optical systems, low-power consumption information transmission, and ultrafast wave-based full signal processing.
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    Zihan Zhao, Yue Wang, Xumin Ding, Haoyu Li, Jiahui Fu, Kuang Zhang, Shah Nawaz Burokur, Qun Wu. Compact logic operator utilizing a single-layer metasurface[J]. Photonics Research, 2022, 10(2): 316
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