Publication Type : Conference Paper
Publisher : IEEE
Source : 2025 1st International Conference on Radio Frequency Communication and Networks (RFCoN)
Url : https://doi.org/10.1109/rfcon62306.2025.11085397
Campus : Chennai
School : School of Engineering
Year : 2025
Abstract : This paper proposes an on-chip antenna suitable for non-destructive testing applications at THz frequencies like surface defect detection and coating measurement at 1.28 THz, for instance, detecting micro cracks in composite materials (automotive applications) or precise thickness measurements on painted surfaces of metals. The five-layered antenna incorporates a metasurface created by a 9x9 array of graphene square structures on top of a SiO2 layer. The structure is made up of a silver ground plane, a SiO2 substrate, a graphene rectangular patch, and a SiO2 superstrate as the foundation for the graphene metasurface array. The application of the graphene metasurface increases the gain, radiation efficiency, and total efficiency of the antenna. The antenna exhibits a directivity of 6.618 dBi and a gain of 6.243 dBi. Additionally, it exhibits a radiation efficiency of 91.73% and a total efficiency of 91.60%.
Cite this Research Publication : Sakthiya J, Sarvesh Ramm R T, Vaisshale Rathinasamy, Design and Optimization of On-Chip THz Metasurface Antenna for Non Destructive Testing Applications, 2025 1st International Conference on Radio Frequency Communication and Networks (RFCoN), IEEE, 2025, https://doi.org/10.1109/rfcon62306.2025.11085397