Abstract
This paper investigates the discretization of a periodic metasurface and demonstrates how such a surface can achieve perfect anomalous reflection. Whilst most contemporary theoretical works on metasurfaces deal with continuous current or impedance distributions, we examine how discretization affects a metasurface, and show that in some cases one can discretize a metasurface aggressively - to the extent of having only two cells per spatial period. Such aggressive discretization can lead to great simplifications in metasurface design, and perhaps more surprisingly, a possible performance improvement from continuous metasurfaces. Using this aggressive discretization technique, we report the design of a binary Huygens' metasurface which reflects an incident plane wave at 50° into a reflected direction of -22.5°. Full-wave electromagnetic simulation shows the achievement of anomalous reflection with a power efficiency of 99.1%, which dramatically surpasses the performance of a corresponding passive continuous metasurface, for which the power efficiency is fundamentally limited to 69.6%.
| Original language | English |
|---|---|
| Title of host publication | 32nd General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS) |
| Publisher | IEEE |
| ISBN (Electronic) | 9789082598704 |
| DOIs | |
| Publication status | Published - Aug 2017 |
| Externally published | Yes |
| Event | 32nd International Union of Radio Science General Assembly and Scientific Symposium, URSI GASS 2017 - Montreal Convention Center, Montreal, Canada Duration: 19 Aug 2017 → 26 Aug 2017 http://www.ursi2017.org/welcome_e.shtml |
Publication series
| Name | General Assembly and Scientific Symposium, URSI |
|---|---|
| Publisher | IEEE |
Conference
| Conference | 32nd International Union of Radio Science General Assembly and Scientific Symposium, URSI GASS 2017 |
|---|---|
| Place | Canada |
| City | Montreal |
| Period | 19/08/17 → 26/08/17 |
| Internet address |
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