Standout Papers
- Coding metamaterials, digital metamaterials and programmable metamaterials (2014)
- Broadband Ground-Plane Cloak (2009)
- Wireless Communications With Reconfigurable Intelligent Surface: Path Loss Modeling and Experimental Measurement (2020)
- Electromagnetic reprogrammable coding-metasurface holograms (2017)
- Space-time-coding digital metasurfaces (2018)
- Conformal surface plasmons propagating on ultrathin and flexible films (2012)
- Polarization-independent wide-angle triple-band metamaterial absorber (2011)
- Ultrawideband and High-Efficiency Linear Polarization Converter Based on Double V-Shaped Metasurface (2015)
- Broadband and high-efficiency conversion from guided waves to spoof surface plasmon polaritons (2013)
- Broadband diffusion of terahertz waves by multi-bit coding metasurfaces (2015)
- Three-dimensional broadband ground-plane cloak made of metamaterials (2010)
- Machine-learning reprogrammable metasurface imager (2019)
- Anisotropic coding metamaterials and their powerful manipulation of differently polarized terahertz waves (2016)
- Triple-band terahertz metamaterial absorber: Design, experiment, and physical interpretation (2012)
- Convolution Operations on Coding Metasurface to Reach Flexible and Continuous Controls of Terahertz Beams (2016)
- A programmable diffractive deep neural network based on a digital-coding metasurface array (2022)
- Smart metasurface with self-adaptively reprogrammable functions (2019)
- Programmable time-domain digital-coding metasurface for non-linear harmonic manipulation and new wireless communication systems (2018)
- A wireless communication scheme based on space- and frequency-division multiplexing using digital metasurfaces (2021)
- DeepNIS: Deep Neural Network for Nonlinear Electromagnetic Inverse Scattering (2018)
- Deep Learning: A Rapid and Efficient Route to Automatic Metasurface Design (2019)
- An optically driven digital metasurface for programming electromagnetic functions (2020)
Immediate Impact
27 from Science/Nature 132 standout
Citing Papers
A guidance to intelligent metamaterials and metamaterials intelligence
2025 Standout
Two-dimensional non-Hermitian skin effect in an ultracold Fermi gas
2025 StandoutNature
Works of Tie Jun Cui being referenced
Experimental Identification of the Second‐Order Non‐Hermitian Skin Effect with Physics‐Graph‐Informed Machine Learning
2022
Non-Hermitian Skin Effect in a Non-Hermitian Electrical Circuit
2021
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Tie Jun Cui | 34176 | 31605 | 19196 | 1.2k | 50.7k | |
| Andrea Alù | 31150 | 16500 | 13346 | 810 | 53.2k | |
| David R. Smith | 58239 | 36219 | 17423 | 401 | 74.8k | |
| Cheng‐Wei Qiu | 24798 | 13495 | 10058 | 672 | 42.8k | |
| Nader Engheta | 18747 | 9692 | 8994 | 416 | 30.2k | |
| Sailing He | 8995 | 6618 | 16982 | 1.2k | 32.7k | |
| Yuri S. Kivshar | 30953 | 11639 | 20323 | 1.1k | 78.4k | |
| J. B. Pendry | 46860 | 24711 | 16030 | 442 | 72.8k | |
| Federico Capasso | 37144 | 18779 | 28728 | 748 | 74.8k | |
| C. T. Chan | 13769 | 5978 | 7946 | 541 | 38.9k | |
| Nikolay I. Zheludev | 20741 | 7456 | 10382 | 489 | 31.8k |
All Works
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