A THz Slot Antenna Design Using Analytical Techniques

Author:

Rozenberg Shay1ORCID,Yahalom Asher1ORCID

Affiliation:

1. Department of Electrical & Electronic Engineering, Ariel University, Ariel 40700, Israel

Abstract

Slot antennas are very popular microwave antennas, and slotted waveguides are used for high frequency radar systems. A thin slot in an infinite ground plane is the complement to a dipole in free space. This was described by H.G. Booker, who extended Babinet’s principle from optics to show that the slot will have the same radiation pattern as a dipole such that the E and H fields are swapped. As a result, the polarization is rotated, so that radiation from the vertical slot is polarized horizontally. In this work, we show how this straightforward analytical technique can be used for the design of high-frequency THz slot antennas. The analysis is then corroborated by using a numerical simulation which validates the performance parameters predicted by the analytical technique. We show by simulation that, despite the simplicity of our classical approach, we obtained useful results, even at THz frequencies. We show that gradually moving the slot position from the centerline improves the antenna’s performance.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference32 articles.

1. Collin, R.E. (1992). Foundations for Microwave Engineering, Mcgraw-Hill College. [2nd ed.].

2. Slot Aerials and Their Relation to Complementary Wire Aerials;Booker;J. IEE,1946

3. Wade, P. (2023, May 01). The W1GHZ Online Microwave Antenna Book, Chapter 7. Available online: http://www.w1ghz.org/antbook/preface.htm.

4. Bell, S. (1995, January 5–7). KB7TRZ, Slot Antenna Design. Proceedings of the 40th Annual West Coast VHF/UHF Conference, Cerritos, CA, USA. Available online: http://www.qsl.net/w6by/techtips/slot_ant.html.

5. Stegen, R.J. (2023, May 01). Longitudinal Shunt Slot Characteristics, Hughes Technical Memorandum No. 261, Culver City, CA. Available online: http://www.dtic.mil/dtic/tr/fulltext/u2/a800305.pdf.

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