单/多端口可调谐太赫兹圆极化介质谐振器天线的实现

IF 2.9 4区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Vishwanath, Gaurav Varshney, Bikash Chandra Sahana
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引用次数: 18

摘要

实现了一种可调谐太赫兹圆极化介质谐振器天线,并对其进行了数值研究。设计了一种采用基本磁偶极子工作的孔径耦合太赫兹矩形介质谐振器天线。使用材料微扰技术对模态场分布进行微扰,并且电场矢量在水平面内对齐,其正交分量之间具有正交相位差。因此,在工作通带中获得圆偏振。所提出的天线提供了12.94%(4.27–4.86 THz)的10dB阻抗带宽和3.77%(4.43–4.60 THz))的3dB轴比带宽。此外,可调谐性是通过施加静电偏置电压来调制涂覆在介电谐振器顶部的石墨烯层的化学势来实现的。此外,天线提供6.45dBic的增益和98%的辐射效率。所提出的天线还可以用于实现多端口无线太赫兹通信系统,具有可调谐CP响应的优点,具有无可挑剔的高辐射性能参数。使用所提出的金属带涂层DR实现了一种双端口多输入多输出(MIMO)天线。该天线提供了两个端口之间的高隔离,以及极化响应和模式分集,MIMO性能参数(如包络相关系数和分集增益)的可接受值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementing the single/multiport tunable terahertz circularly polarized dielectric resonator antenna

A tunable terahertz circularly-polarized dielectric resonator antenna is implemented and numerically studied. An aperture coupled terahertz rectangular dielectric resonator antenna operating with the fundamental magnetic dipole is designed. The modal field distribution is perturbed using the material-perturbation technique and the electric field vectors are aligned in the horizontal plane with their orthogonal components having quadrature phase difference between them. Consequently, the circular polarization is obtained in the operating passband. The proposed antenna provides the 10-dB impedance bandwidth of 12.94% (4.27–4.86 THz) and 3 dB axial ratio bandwidth of 3.77% (4.43–4.60 THz). Moreover, tunability is achieved by modulation in the chemical potential of graphene layer coated at the top of the dielectric resonator by applying an electrostatic bias voltage. In addition, antenna provides the gain of 6.45 dBic along with 98% radiation efficiency. The proposed antenna can also be used for the implementation of multi-port wireless THz communication systems with the advantage of tunable CP response with impeccably high radiation performance parameters. A two-port multi input, multi output (MIMO) antenna is implemented with the usage of the proposed metal strip coated DR. This antenna provides high isolation between both the ports along with polarization response and pattern diversity with the acceptable value of MIMO performance parameters like envelop correlation coefficient and diversity gain.

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来源期刊
Nano Communication Networks
Nano Communication Networks Mathematics-Applied Mathematics
CiteScore
6.00
自引率
6.90%
发文量
14
期刊介绍: The Nano Communication Networks Journal is an international, archival and multi-disciplinary journal providing a publication vehicle for complete coverage of all topics of interest to those involved in all aspects of nanoscale communication and networking. Theoretical research contributions presenting new techniques, concepts or analyses; applied contributions reporting on experiences and experiments; and tutorial and survey manuscripts are published. Nano Communication Networks is a part of the COMNET (Computer Networks) family of journals within Elsevier. The family of journals covers all aspects of networking except nanonetworking, which is the scope of this journal.
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