World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
37
Citations
6122
World Ranking
5104
National Ranking
745

Overview

Xiangyu Cao is affiliated with the Air Force Engineering University in China and focuses primarily on research in the fields of Engineering and Materials Science. Their work spans several subfields including Aerospace Engineering, Electronic, Optical and Magnetic Materials, Electrical and Electronic Engineering, Biomedical Engineering, and Atomic and Molecular Physics, and Optics.

The main topics of Xiangyu Cao's research include Advanced Antenna and Metasurface Technologies, Metamaterials and Metasurfaces Applications, Antenna Design and Analysis, Microwave Engineering and Waveguides, Plasmonic and Surface Plasmon Research, Orbital Angular Momentum in Optics, and Antenna Design and Optimization.

Frequent publication venues for their work are:

  • Optics Express
  • IEEE Antennas and Wireless Propagation Letters
  • IEEE Transactions on Antennas and Propagation
  • Optical Materials Express
  • AIP Advances

Xiangyu Cao has collaborated regularly with several researchers, with notable frequent co-authors including:

  • Sijia Li
  • Huanhuan Yang
  • Tong Li
  • Jun Gao
  • Liaori Jidi

Some of the recent published papers by Xiangyu Cao are:

  • Recent Progress in Advanced Tactile Sensing Technologies for Soft Grippers, 2023, Advanced Functional Materials
  • Asymmetric transmission for dual-circularly and linearly polarized waves based on a chiral metasurface, 2021, Optics Express
  • Low In-Band-RCS Antennas Based on Anisotropic Metasurface Using a Novel Integration Method, 2020, IEEE Transactions on Antennas and Propagation
  • A Wide-Beam Antenna for Wide-Angle Scanning Linear Phased Arrays, 2020, IEEE Antennas and Wireless Propagation Letters
  • Ultrawide-Angle and High-Scanning-Rate Leaky Wave Antenna Based on Spoof Surface Plasmon Polaritons, 2021, IEEE Transactions on Antennas and Propagation

Xiangyu Cao's body of work contributes notably to the areas of antenna design and metamaterial applications, with a significant number of publications addressing advanced antenna and metasurface technologies. Their interdisciplinary research connects core engineering principles with innovative materials science applications.

Best Publications

  • A programmable metasurface with dynamic polarization, scattering and focusing control

    Huanhuan Yang;Xiangyu Cao;Fan Yang;Jun Gao

  • A 1-Bit $10 imes 10$ Reconfigurable Reflectarray Antenna: Design, Optimization, and Experiment

    Huanhuan Yang;Fan Yang;Shenheng Xu;Yilin Mao

  • RCS Reduction of Waveguide Slot Antenna With Metamaterial Absorber

    Tao Liu;Xiangyu Cao;Jun Gao;Qiurong Zheng

  • A 1600-Element Dual-Frequency Electronically Reconfigurable Reflectarray at X/Ku-Band

    Huanhuan Yang;Fan Yang;Xiangyu Cao;Shenheng Xu

  • A Study of Phase Quantization Effects for Reconfigurable Reflectarray Antennas

    Huanhuan Yang;Fan Yang;Shenheng Xu;Maokun Li

  • Wideband RCS Reduction of a Microstrip Antenna Using Artificial Magnetic Conductor Structures

    Yuejun Zheng;Jun Gao;Xiangyu Cao;Zidong Yuan

  • A Coding Diffuse Metasurface for RCS Reduction

    Xiao Liu;Jun Gao;Liming Xu;Xiangyu Cao

  • Wideband Gain Enhancement and RCS Reduction of Fabry–Perot Resonator Antenna With Chessboard Arranged Metamaterial Superstrate

    Yuejun Zheng;Jun Gao;Yulong Zhou;Xiangyu Cao

  • Recent Progress in Advanced Tactile Sensing Technologies for Soft Grippers

    Unknown

  • Wideband, thin, and polarization-insensitive perfect absorber based the double octagonal rings metamaterials and lumped resistances

    Sijia Li;Jun Gao;Xiangyu Cao;Wenqiang Li

  • Ultra-wideband and Polarization-Insensitive Perfect Absorber Using Multilayer Metamaterials, Lumped Resistors, and Strong Coupling Effects

    Si-Jia Li;Peng-Xin Wu;He-Xiu Xu;Yu-Long Zhou

  • Broadband diffusion metasurface based on a single anisotropic element and optimized by the Simulated Annealing algorithm.

    Yi Zhao;Xiangyu Cao;Jun Gao;Yu Sun

  • Broadband Low-RCS Metasurface and Its Application on Antenna

    Yi Zhao;Xiangyu Cao;Jun Gao;Xu Yao

  • Multiband and broadband polarization-insensitive perfect absorber devices based on a tunable and thin double split-ring metamaterial.

    Sijia Li;Jun Gao;Xiangyu Cao;Zhao Zhang

  • Asymmetric transmission for dual-circularly and linearly polarized waves based on a chiral metasurface.

    Bowen Han;Sijia Li;Zhuoyue Li;Guoshuai Huang

  • Ultra-broadband Reflective Metamaterial with RCS Reduction based on Polarization Convertor, Information Entropy Theory and Genetic Optimization Algorithm.

    Si Jia Li;Xiang Yu Cao;Li Ming Xu;Long Jian Zhou

  • A 1-Bit Multipolarization Reflectarray Element for Reconfigurable Large-Aperture Antennas

    Huanhuan Yang;Fan Yang;Shenheng Xu;Maokun Li

  • Design of Resistor-Loaded Reflectarray Elements for Both Amplitude and Phase Control

    Huanhuan Yang;Xibi Chen;Fan Yang;Shenheng Xu

  • A Wide-Beam Antenna for Wide-Angle Scanning Linear Phased Arrays

    Haonan Yang;Xiangyu Cao;Jun Gao;Huanhuan Yang

  • Low In-Band-RCS Antennas Based on Anisotropic Metasurface Using a Novel Integration Method

    Huanhuan Yang;Tong Li;Liming Xu;Xiangyu Cao

  • Analysis and Design of Three-Layer Perfect Metamaterial-Inspired Absorber Based on Double Split-Serration-Rings Structure

    Si-Jia Li;Xiang-Yu Cao;Jun Gao;Tao Liu

  • Multiple OAM vortex beams generation using 1-bit metasurface.

    Di Zhang;Xiangyu Cao;Huanhuan Yang;Jun Gao

  • Broadband Low-RCS Circularly Polarized Array Using Metasurface-Based Element

    Yi Zhao;Xiangyu Cao;Jun Gao;Liming Xu

Frequent Co-Authors

Shenheng Xu
Shenheng Xu Tsinghua University
Fan Yang
Fan Yang Tsinghua University
Tie Jun Cui
Tie Jun Cui Southeast University

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