首页> 外文期刊>Scientific reports. >An Information Theory-Inspired Strategy for Design of Re-programmable Encrypted Graphene-based Coding Metasurfaces at Terahertz Frequencies
【24h】

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

机译:在太赫兹频率下的重新编程加密石墨烯的编码元措施设计的信息理论启发策略

获取原文
       

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.
机译:灵感来自信息理论,在太赫兹频率下研究了一种新的重新编程加密石墨烯的编码元件的新概念。提出了一种频道编码功能以将任意信息消息卷积到由相加密的编码元面生成的无法识别但可收回的奇偶校验波束上。具有双模偏置电压的基于石墨烯的反射电池被设计为充当“0”和“1”元原子,提供相反反射阶段的宽带。通过利用石墨烯可调性,所提出的方案在信息消息的实时映射中启用了前所未有的自由度,在多个奇偶校验梁上无法损坏,改变和反向设计。可以通过我们的多功能元表面动态地实现各种加密类型,例如镜像,异常反射,多光束生成和散射扩散。此外,与传统的耗时和优化的方法相反,本文令人信服地提供了一种快速,简单,有效的,有效地设计的任意大尺寸的扩散元件。严格的全波模拟证实了相加密的元尺度在宽带频率范围内展现的相加密的元件尺寸的偏振不敏感反射率小于1?THz至1.7?THz。这项工作揭示了扩展重新编程的THz编码元件的新机会,并且可能对反射型安全系统,计算成像和伪装技术感兴趣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号