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Near-Field Plates: Metamaterial Surfaces/Arrays for Subwavelength Focusing and Probing., , , and . Proc. IEEE, 99 (10): 1806-1815 (2011)PhysFad: Physics-Based End-to-End Channel Modeling of RIS-Parametrized Environments With Adjustable Fading., , , , , and . IEEE Trans. Wirel. Commun., 22 (1): 580-595 (2023)Wireless Sensing Using Dynamic Metasurface Antennas: Challenges and Opportunities., , , , , and . IEEE Commun. Mag., 58 (6): 66-71 (2020)Focusing Microwaves in the Fresnel Zone With a Cavity-Backed Holographic Metasurface., , , , and . IEEE Access, (2018)MetaSense: Boosting RF Sensing Accuracy Using Dynamic Metasurface Antenna., , , , , , , and . IEEE Internet Things J., 8 (18): 14110-14126 (2021)Channel Estimation with Hybrid Reconfigurable Intelligent Metasurfaces., , , , , and . CoRR, (2022)Toward Dynamically Adapting Wireless Intra-Chip Channels to Traffic Needs with a Programmable Metasurface., , and . NanoCoCoA@SenSys, page 20-25. ACM, (2020)Toward THz RIS-Parametrized Wireless Networks-on-Chip., , and . NANOCOM, page 142-143. ACM, (2023)Dynamic Metasurface Antennas for 6G Extreme Massive MIMO Communications., , , , and . CoRR, (2020)Enhancing Capacity of Spatial Multiplexing Systems Using Reconfigurable Cavity-Backed Metasurface Antennas in Clustered MIMO Channels., , , , and . IEEE Trans. Commun., 67 (2): 1070-1084 (2019)