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Multiband coherent perfect absorption in a water-based metasurface

We design an ultrathin water-based metasurface capable of coherent perfect absorption (CPA) at radio frequencies. It is demonstrated that such a metasurface can almost completely absorb two symmetrically incident waves within four frequency bands, each having its own modulation depth of metasurface...

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Bibliographic Details
Published in:Optics express 2017-07, Vol.25 (14), p.15737-15745
Main Authors: Zhu, Weiren, Rukhlenko, Ivan D, Xiao, Fajun, He, Chong, Geng, Junping, Liang, Xianling, Premaratne, Malin, Jin, Ronghong
Format: Article
Language:English
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Summary:We design an ultrathin water-based metasurface capable of coherent perfect absorption (CPA) at radio frequencies. It is demonstrated that such a metasurface can almost completely absorb two symmetrically incident waves within four frequency bands, each having its own modulation depth of metasurface absorptivity. Specifically, the absorptivity at 557.2 MHz can be changed between 0.59% and 99.99% via the adjustment of the phase difference between the waves. The high angular tolerance of our metasurface is shown to enable strong CPA at oblique incidence, with the CPA frequency almost independent of the incident angle for TE waves and varying from 557.2 up to 584.2 MHz for TM waves. One can also reduce this frequency from 712.0 to 493.3 MHz while retaining strong coherent absorption by varying the water layer thickness. It is also show that the coherent absorption performance can be flexibly controlled by adjusting the temperature of water. The proposed metasurface is low-cost, biocompatible, and useful for electromagnetic modulation and switching.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.25.015737