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Study on On-Chip Antenna Design Based on Metamaterial-Inspired and Substrate Integrated Waveguide Properties for Millimetre-Wave and THz Integrated-Circuit Applications

Alibakhshikenari, Mohammad; Virdee, Bal; Althuwayb, A.A.; Aissa, S.; See, Chan Hwang; Abd-Alhameed, Raed; Falcone, Francisco; Limiti, Ernesto

Authors

Mohammad Alibakhshikenari

Bal Virdee

A.A. Althuwayb

S. Aissa

Raed Abd-Alhameed

Francisco Falcone

Ernesto Limiti



Abstract

This paper presents the results of a study on improving the performance parameters such as the impedance bandwidth, radiation gain and efficiency, as well as suppressing substrate loss of an innovative antenna for on-chip implementation for millimetre-wave and terahertz integrated-circuits. This was achieved by using the metamaterial and the substrate-integrated waveguide (SIW) technologies. The on-chip antenna structure comprises five alternating layers of metallization and silicon. An array of circular radiation patches with metamaterial-inspired crossed-shaped slots are etched on the top metallization layer below which is a silicon layer whose bottom surface is metalized to create a ground plane. Implemented in the silicon layer below is a cavity above which is no ground plane. Underneath this silicon layer is where an open-ended microstrip feedline is located which is used to excite the antenna. The feed mechanism is based on the coupling of the electromagnetic energy from the bottom silicon layer to the top circular patches through the cavity. To suppress surface waves and reduce substrate loss, the SIW concept is applied at the top silicon layer by implementing the metallic via holes at the periphery of the structure that connect the top layer to the ground plane. The proposed on-chip antenna has an average measured radiation gain and efficiency of 6.9 dBi and 53%, respectively, over its operational frequency range from 0.285–0.325 THz. The proposed on-chip antenna has dimensions of 1.35 × 1 × 0.06 mm3. The antenna is shown to be viable for applications in millimetre-waves and terahertz integrated-circuits.

Citation

Alibakhshikenari, M., Virdee, B., Althuwayb, A., Aissa, S., See, C. H., Abd-Alhameed, R., Falcone, F., & Limiti, E. (2021). Study on On-Chip Antenna Design Based on Metamaterial-Inspired and Substrate Integrated Waveguide Properties for Millimetre-Wave and THz Integrated-Circuit Applications. Journal of Infrared, Millimeter and Terahertz Waves, 42, 17-28. https://doi.org/10.1007/s10762-020-00753-8

Journal Article Type Article
Acceptance Date Oct 11, 2020
Online Publication Date Oct 26, 2020
Publication Date 2021-01
Deposit Date Oct 14, 2020
Publicly Available Date Oct 27, 2021
Journal Journal of Infrared, Millimeter and Terahertz Waves
Print ISSN 1866-6892
Electronic ISSN 1866-6906
Publisher Springer
Peer Reviewed Peer Reviewed
Volume 42
Pages 17-28
DOI https://doi.org/10.1007/s10762-020-00753-8
Keywords On-chip antenna, terahertz (THz) integrated-circuits, metamaterial (MTM), substrate-integrated waveguide (SIW), silicon process, millimetre-waves (mm-waves), antenna feed mechanism
Public URL http://researchrepository.napier.ac.uk/Output/2693644

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Study On On-Chip Antenna Design Based On Metamaterial-Inspired And Substrate Integrated Waveguide Properties For Millimetre-Wave And THz Integrated-Circuit Applications (accepted version) (1.4 Mb)
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Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/

Copyright Statement
This article is licensed under a Creative Commons Attribution 4.0 International License.





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