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用于太赫兹通信的基于石墨烯的潘查拉特纳姆-贝里相位单元的宽带圆极化反射阵列

Wide-Band Circularly Polarized ReflectarrayUsing Graphene-Based Pancharatnam-Berry Phase Unit-Cells for Terahertz Communication.

作者信息

Deng Li, Zhang Yuanyuan, Zhu Jianfeng, Zhang Chen

机构信息

Beijing Key Laboratory of Network System Architecture and Convergence, School of Information and Communication Engineering, Beijing University of Posts and Telecommunications, Beijing 100876, China.

出版信息

Materials (Basel). 2018 Jun 5;11(6):956. doi: 10.3390/ma11060956.

Abstract

A wide-band and high gain circularly polarized (CP) graphene-based reflectarray operating in the THz regime is proposed and theoretically investigated in this paper. The proposed reflectarray consists of a THz CP source and several graphene-based unit-cells. Taking advantages of the Pancharatnam Berry (PB) phase principle, the graphene-based unit-cell is capable of realizing a tunable phase range of 360° in a wide-band (1.4⁻1.7 THz) by unit-cell rotating, overcoming the restriction of intrinsic narrow-band resonance in graphene. Therefore, this graphene-based unit-cell exhibits superior bandwidth and phase tunability to its previous counterparts. To demonstrate this, a wide-band (1.4⁻1.7 THz) focusing metasurface based on the proposed unit-cell that exhibits excellent focusing effect was designed. Then, according to the reversibility of the optical path, a CP reflectarray was realized by placing a wide-band CP THz source at the focal point of the metasurface. Numerical simulation demonstrates that this reflectarray can achieve a stable high gain up to 15 dBic and an axial ratio around 2.1 dB over the 1.4⁻1.7 THz band. The good radiation performance of the proposed CP reflectarray, as demonstrated, underlines its suitability for the THz communication applications. Moreover, the design principle of this graphene-based reflectarray with a full 360° phase range tunable unit-cells provides a new pathway to design high-performance CP reflectarray in the THz regime.

摘要

本文提出并从理论上研究了一种工作在太赫兹波段的宽带、高增益圆极化石墨烯基反射阵列。所提出的反射阵列由一个太赫兹圆极化源和几个石墨烯基单元组成。利用潘查拉特纳姆 - 贝里(PB)相位原理,基于石墨烯的单元能够通过单元旋转在宽带(1.4⁻1.7太赫兹)内实现360°的可调相位范围,克服了石墨烯固有窄带共振的限制。因此,这种基于石墨烯的单元与其先前的同类单元相比,具有卓越的带宽和相位可调性。为了证明这一点,设计了一种基于所提出单元的宽带(1.4⁻1.7太赫兹)聚焦超表面,该超表面具有出色的聚焦效果。然后,根据光路的可逆性,通过在超表面的焦点处放置一个宽带圆极化太赫兹源来实现一个圆极化反射阵列。数值模拟表明,该反射阵列在1.4⁻1.7太赫兹频段内可以实现高达15 dBic的稳定高增益和大约2.1 dB的轴比。所展示的这种圆极化反射阵列良好的辐射性能突出了其在太赫兹通信应用中的适用性。此外,这种具有全360°相位范围可调单元的石墨烯基反射阵列的设计原理为在太赫兹波段设计高性能圆极化反射阵列提供了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/740c/6025078/3f9c0e43b2c6/materials-11-00956-g001.jpg

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