Design and Analysis of Ultra-wideband and High Directive THz Photoconductive Vivaldi Antenna
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Abstract
In this work a novel design of an ultrawideband and highly directive Vivaldi photoconductive antenna (PCA) is reported for the first time for the THz sensing and imaging applications. The optical-to-THz conversion efficiency for the enhanced directivity of the reported PCA is enhanced by adding a hemispherical silicon-based lens with the PCA gold electrode and quartz substrate (εr = 3.78, tan δ = 0.0001). The optimization of the antenna design parameters is performed in CST MWS for the frequency range of 1-6 THz. The design antenna has UWB -10 dB impedance and 3-dB AR bandwidths of 6 THz, maximum directivity of 10 dBi and maximum total radiation efficiency of > 40%.
Keywords: High directivity, Log spiral antenna, Photoconductive THz antenna, Wideband
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Yousaf, J., Dhiflaoui, A., Yahyaoui, A., Hakim, B., Zarouan, M., Zouch, W., ... & Rmili, H. (2020). Design and analysis of ultra-wideband and high directive THz photoconductive Vivaldi antenna. The Applied Computational Electromagnetics Society Journal (ACES), 1242-1254.
