4.4 Article

Design and Analysis of a Novel Antenna for THz Wireless Communication

期刊

INTELLIGENT AUTOMATION AND SOFT COMPUTING
卷 31, 期 1, 页码 607-619

出版社

TECH SCIENCE PRESS
DOI: 10.32604/iasc.2022.020216

关键词

THz antenna; metamaterial; microstrip patch; smart antenna

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THz technology has great academic value and a wide range of applications in various fields. It can provide rich spectrum information and enable fingerprint detection, making it a valuable tool in basic research and applied science.
The frequency range of the terahertz (THz) band is usually defined as 0.3 similar to 3.0 THz, and some scholars have also extended it to 0.1 similar to 10 THz. THz technology has the characteristics of low photon radiation energy and rich spectrum information, and the THz band contains the vibration and rotation resonance frequencies of many material macromolecules, which can realize fingerprint detection. Therefore, THz technology has great academic value and a wide range of applications in basic research and applied science. Application prospects, such as THz spectroscopy technology provides a new means for studying the interaction between electromagnetic waves and matter, and its application in sensing has also penetrated into semiconductors, biology and medicine and health, homeland security, food quality control and environmental testing and other major fields. This paper proposes a novel patch antenna structure for the THz communication. The proposed antenna is designed on a polyimide substrate and graphene. The prominent feature of this antenna is that the radiation performance is does not deteriorates when tuning the frequency points. The frequency is controlled through a bias electrical field and not the conventional electronic switch. Theoretical analysis is performed for frequency-tuning and the equivalent circuit model is utilized to determine the input impedance. Simulation results show that the proposed THz antenna operates in the wideband THz with high gain and radiation efficiency.

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