太赫兹辐射
天线效率
天线(收音机)
天线测量
辐射模式
炸薯条
可重构天线
带宽(计算)
天线增益
电气工程
电子工程
光电子学
计算机科学
电信
物理
工程类
作者
Mohammad Alibakhshikenari,Bal S. Virdee,Shahram Salekzamankhani,Fatemeh Babaeian,Syed Mansoor Ali,Amjad Iqbal,Muath Al‐Hasan
标识
DOI:10.1016/j.aeue.2023.154684
摘要
The paper presents a feasibility study on an innovative terahertz (THz) on-chip antenna array designed to reliably meet the high-performance connectivity requirements for next generation of wireless devices to enable bandwidth intensive applications, superfast fast streaming, bulk data exchange between internet of things (IoT) devices/smartphones and the development of holographic video conferencing. The significantly smaller wavelength of the THz-band and metasurface-inspired and artificial magnetic conductor (AMC) technologies are exploited here to realize an on-chip antenna. Several experimental on-chip antenna arrays of various matrix sizes were investigated for application at millimeter-wave/Terahertz RF front-end transceivers. The technique proposed here is shown to enhance the antennas impedance bandwidth, gain and radiation efficiency. Purely for experimental purposes a 2 × 24 radiation element array was fabricated. It exhibits an average measured gain of 20.36 dBi and radiation efficiency of 37.5% across 0.3–0.314 THz. For proof of the concept purposes a THz receiver incorporating the proposed on-chip antenna was modelled. The results show that with the proposed antenna array a THz receiver can provide a gain of 25 dB when the antenna is directly matched to low-noise amplifier stage.
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