An Information Theory-Inspired Strategy for Design of Re-programmable Encrypted Graphene-based Coding Metasurfaces at Terahertz Frequencies

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作者
Ali Momeni
Kasra Rouhi
Hamid Rajabalipanah
Ali Abdolali
机构
[1] Iran University of Science and Technology,Department of Electrical Engineering
[2] Iran University of Science and Technology,Applied Electromagnetic Laboratory, School of Electrical Engineering
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Scientific Reports | / 8卷
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摘要
Inspired by the information theory, a new concept of re-programmable encrypted graphene-based coding metasurfaces was investigated at terahertz frequencies. A channel-coding function was proposed to convolutionally record an arbitrary information message onto unrecognizable but recoverable parity beams generated by a phase-encrypted coding metasurface. A single graphene-based reflective cell with dual-mode biasing voltages was designed to act as “0” and “1” meta-atoms, providing broadband opposite reflection phases. By exploiting graphene tunability, the proposed scheme enabled an unprecedented degree of freedom in the real-time mapping of information messages onto multiple parity beams which could not be damaged, altered, and reverse-engineered. Various encryption types such as mirroring, anomalous reflection, multi-beam generation, and scattering diffusion can be dynamically attained via our multifunctional metasurface. Besides, contrary to conventional time-consuming and optimization-based methods, this paper convincingly offers a fast, straightforward, and efficient design of diffusion metasurfaces of arbitrarily large size. Rigorous full-wave simulations corroborated the results where the phase-encrypted metasurfaces exhibited a polarization-insensitive reflectivity less than −10 dB over a broadband frequency range from 1 THz to 1.7 THz. This work reveals new opportunities for the extension of re-programmable THz-coding metasurfaces and may be of interest for reflection-type security systems, computational imaging, and camouflage technology.
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[1]  
Chen HT(2016)A review of metasurfaces: Physics and applications Reports Prog. Phys. 79 76401-1973
[2]  
Taylor AJ(2014)Coding Metamaterials, Digital Metamaterials and Programming Metamaterials Light Sci. Appl. 3 1965-1380
[3]  
Yu N(2016)Anisotropic coding metamaterials and their powerful manipulation of differently polarized terahertz waves Light Sci. Appl. 5 1374-3668
[4]  
Cui TJ(2016)Frequency-Dependent Dual-Functional Coding Metasurfaces at Terahertz Frequencies Adv. Opt. Mater. 4 3644-11
[5]  
Qi M(2015)Anomalous Terahertz Reflection and Scattering by Flexible and Conformal Coding Metamaterials Adv. Opt. Mater. 3 1-2447
[6]  
Wan X(2015)Broadband diffusion of terahertz waves by multi-bit coding metasurfaces Light Sci. Appl. 4 2438-S280
[7]  
Zhao J(2016)Broadband and wide-angle RCS reduction using a 2-bit coding ultrathin metasurface at terahertz frequencies Sci. Rep. 6 S266-171
[8]  
Cheng Q(2017)Information metamaterials and metasurfaces J. Mater. Chem. C 5 143-8
[9]  
Liu S(2016)Broadband diffuse terahertz wave scattering by flexible metasurface with randomized phase distribution Sci. Rep. 6 1-12
[10]  
Liu S(2016)Broadband diffusion metasurface based on a single anisotropic element and optimized by the Simulated Annealing algorithm Sci. Rep. 6 1-191