High-Gain On-Chip Antenna Design on Silicon Layer With Aperture Excitation for Terahertz Applications
Creators
- 1. Electronic Engineering Department, University of Rome "Tor Vergata", Rome, Italy
- 2. Center for Communications Technology, London Metropolitan University, London, U.K.
- 3. Institute for Communication Systems (ICS), Home of 5G Innovation Centre (5GIC), University of Surrey, Guildford, U.K.
- 4. School of Engineering, University of Bolton, BL3 5AB Bolton, U.K. School of Engineering and the Built Environment, Edinburgh Napier University, Edinburgh, U.K.
- 5. Faculty of Engineering and Informatics, University of Bradford, Bradford, U.K.
- 6. Department of Electric and Electronic Engineering, Universidad Pública de Navarra, Pamplona, Spain
- 7. Institut National de la Recherche Scientifique (INRS), Université du Quebec à Montréal, Montreal, Canada
Description
This letter investigates the feasibility of designing a high gain on-chip antenna on silicon technology for subterahertz applications over a wide-frequency range. High gain is achieved by exciting the antenna using an aperture fed mechanism to couple electromagnetics energy from a metal slot line, which is sandwiched between the silicon and polycarbonate substrates, to a 15-element array comprising circular and rectangular radiation patches fabricated on the top surface of the polycarbonate layer. An open ended microstrip line, which is orthogonal to the metal slot-line, is implemented on the underside of the silicon substrate. When the open ended microstrip line is excited it couples the signal to the metal slot-line which is subsequently coupled and radiated by the patch array. Measured results show the proposed on-chip antenna exhibits a reflection coefficient of less than -10 dB across 0.290-0.316 THz with a highest gain and radiation efficiency of 11.71 dBi and 70.8%, respectively, occurred at 0.3 THz. The antenna has a narrow stopband between 0.292 and 0.294 THz. The physical size of the presented subterahertz on-chip antenna is 20 × 3.5 × 0.126 mm 3 .
Files
J71.pdf
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