Helical Circular Array Configurations for Generation of Orbital Angular Momentum Beams
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Date
2023
Authors
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Publisher
IEEE-Inst Electrical Electronics Engineers Inc
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Abstract
The vortex electromagnetic waves carrying the orbital angular momentum (OAM) are an increasing subject of study, and the design of a system capable of generating such waves is also of crucial importance. In this letter, a helical circular array (HCA) has been proposed to generate OAM radio beams. The proposed HCA has a more straightforward and more feasible scheme when compared to uniform circular arrays that require additional phase-shifting devices to form interelement phases. The heights of the proposed HCA elements along the $z$-axis are exploited to generate the different OAM modes. For the high-order OAM modes, the height of the HCA is made more compact with the help of the proposed helical circular subarray (HCSA) configurations with spiral phase positions providing a linear phase delay with the azimuth angle. In addition, at high mode values, the HCSA structure creates a smoother OAM vortex beam than HCA. The full-wave simulation results show that the proposed HCA scheme can be used to generate vortex electromagnetic waves with a spiral phase wavefront structure.
Description
Yesilyurt, Ugur/0000-0003-0367-8805; Koc Polat, Hilal/0000-0003-2382-1736
Keywords
Phased Arrays, Spirals, Azimuth, Electromagnetic Scattering, Optical Vortices, Microstrip Antenna Arrays, Microstrip, Helical Circular Microstrip Patch Array, Orbital Angular Momentum (Oam), Vortex Electromagnetic Wave
Fields of Science
Citation
WoS Q
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Scopus Q
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Source
IEEE Antennas and Wireless Propagation Letters
Volume
22
Issue
5
Start Page
1139
End Page
1143
