Multi-channel polarization manipulation based on graphene for encryption communication
Parsa Farzin, Mohammad Javad Hajiahmadi, and Mohammad Soleimani

TL;DR
This paper introduces a reprogrammable graphene-based metasurface for secure, real-time polarization modulation in terahertz communication, enhancing encryption robustness and preventing information leakage.
Contribution
It presents a novel polarization modulation metasurface utilizing graphene nanoribbons and DRPE algorithm for highly secure, real-time terahertz communication with customizable polarization states.
Findings
Successful simulation of polarization-based image hiding.
Enhanced security against eavesdropping in terahertz channels.
Potential applications in secure data storage and imaging.
Abstract
Wave-based cryptography, at the vanguard of advancing technologies in advanced information science, is essential for establishing a diverse array of secure cryptographic platforms. The realization of these platforms hinges on the intelligent application of multiplexing techniques, seamlessly combined with appropriate metasurface technology. Nevertheless, existing multi-channel encryption technologies based on metasurfaces face challenges related to information leakage during partial channel decoding processes. In this paper, we present a reprogrammable metasurface for polarization modulation. This metasurface not only allows for the arbitrary customization of linearly polarized reflected waves but also enables real-time amplitude modulation. Here, relying on polarization amplitude control, a fully secure communication protocol is developed precisely in the terahertz (THZ) spectrum to…
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Taxonomy
TopicsMetamaterials and Metasurfaces Applications · Wireless Communication Security Techniques · Antenna Design and Analysis
