Intelligent Metasurfaces with Continuously Tunable Local Surface Impedance for Multiple Reconfigurable Functions

Sergei Tretyakov, Do‐Hoon Kwon, Odysseas Tsilipakos, Anna C. Tasolamprou, Maria Kafesaki, M. S. Mirmoosa, Costas M. Soukoulis, Fu Liu, Alexandros Pitilakis, Nikolaos V. Kantartzis
2019-04-09

SCID:  54.1/zavxtf4b
How might one make metasurfaces ``intelligent'', to offer multiple reconfigurable functions? The authors show that it can be done by embedding individually addressable tunable chips (mixed-signal integrated circuits) in each unit cell. This enables independent, continuous control of both the resistive and reactive parts of the local complex surface impedance. This allows a broader range of functionalities, among which tunable arbitrary-angle perfect absorption and tunable perfect anomalous reflection are showcased in this study. Further development could unlock other tunable functionalities, such as arbitrary wave-front shaping, space-time-modulated devices, holography, and sensing.
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2019-04-09
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Sergei Tretyakov
Do‐Hoon Kwon
Odysseas Tsilipakos
Anna C. Tasolamprou
Maria Kafesaki
M. S. Mirmoosa
Costas M. Soukoulis
Fu Liu
Alexandros Pitilakis
Nikolaos V. Kantartzis
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