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Updated: Jan 8, 2026

Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station
Published on: April 1, 2020
Diseño y fabricación de una antena de barrido polarizado en rampa con un haz cosecante al cuadrado para aplicaciones
Seyed Mohammad Javad Razavi1, Seyed Mohammad Hamidi2, Seyed Ali Hamidi2
1Faculty of Electric and Computer, Malek Ashtar University of Technology, Tehran, Iran. razavismj@yahoo.com.
Abstract:
This paper presents the design and fabrication of a slant-polarized monopulse array antenna featuring a cosecant-squared radiation pattern for accurate target tracking. The proposed 2 × 8 microstrip array employs a modified proximity coupling scheme and incorporates metallic walls to reduce mutual coupling. A strategically placed ground plane enhances the gain, suppresses the back lobe, and improves isolation from the surrounding environment. The amplitude and phase excitations are optimized with a genetic algorithm that accounts for mutual coupling to synthesize the desired cosecant-squared pattern. A rectangular 180-degree hybrid coupler is integrated to enable monopulse operation in the azimuth plane, thereby improving tracking performance. Measurement results of the fabricated prototype demonstrate a 34% impedance bandwidth (3.8-5.4 GHz), a peak gain of 13.05 dBi, a sidelobe level of 13 dB, a null depth of 24 dB, and an elevation plane beamwidth of 24° at the center frequency, all of which align closely with simulation results. The measured radiation pattern accurately follows the ideal cosecant-squared curve.
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