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Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

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Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes. / Wulff, M.; Wang, Lei; Yang, C. et al.
2022 German Microwave Conference, GeMiC 2022. IEEE, 2022. p. 164-167 (2022 German Microwave Conference, GeMiC 2022).

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Wulff, M, Wang, L, Yang, C & Schuster, C 2022, Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes. in 2022 German Microwave Conference, GeMiC 2022. 2022 German Microwave Conference, GeMiC 2022, IEEE, pp. 164-167. <https://ieeexplore.ieee.org/document/9783509>

APA

Wulff, M., Wang, L., Yang, C., & Schuster, C. (2022). Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes. In 2022 German Microwave Conference, GeMiC 2022 (pp. 164-167). (2022 German Microwave Conference, GeMiC 2022). IEEE. https://ieeexplore.ieee.org/document/9783509

Vancouver

Wulff M, Wang L, Yang C, Schuster C. Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes. In 2022 German Microwave Conference, GeMiC 2022. IEEE. 2022. p. 164-167. (2022 German Microwave Conference, GeMiC 2022).

Author

Wulff, M. ; Wang, Lei ; Yang, C. et al. / Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes. 2022 German Microwave Conference, GeMiC 2022. IEEE, 2022. pp. 164-167 (2022 German Microwave Conference, GeMiC 2022).

Bibtex

@inproceedings{a8575c2b8f924dbe8fe2f52dbdb2e0f2,
title = "Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes",
abstract = "In this paper, the effect of the orientation of the array elements of a uniform circular antenna array (UCA) on orbital angular momentum (OAM) communication is investigated. For the first time, UCAs are studied in which the elements are rotated in a systematic way around their center by a linearly increasing angle of rotation. It is shown here that these UCAs provide a smaller decrease in transmission over distance for some modes compared to other configurations used, but at the cost of increased mode conversion. For that reason the mode conversion and the decrease of the received mode power over distance are of particular interest. U CAs with dipoles normal and tangential to the array surface are compared. For the latter, the dipoles are rotated around their center with a rotation angle increasing linearly around the U CA. The transmission of the OAM modes is evaluated on a sphere, showing that the direction of the strongest transmission of the OAM modes varies with the rotation of the array elements. It is shown that the U CAs with radial (or azimuthal) dipoles provide the best mode transmission with little mode conversion. All investigations have been carried out using a tool based on the method of moments (MoM). ",
keywords = "orbital angular momentum (OAM), uniform circular array (UCA)",
author = "M. Wulff and Lei Wang and C. Yang and C. Schuster",
year = "2022",
month = may,
day = "16",
language = "English",
isbn = "9783982039725",
series = "2022 German Microwave Conference, GeMiC 2022",
publisher = "IEEE",
pages = "164--167",
booktitle = "2022 German Microwave Conference, GeMiC 2022",

}

RIS

TY - GEN

T1 - Effect of the Orientation of the Array Elements of Uniform Circular Antenna Arrays on Orbital Angular Momentum (OAM) Modes

AU - Wulff, M.

AU - Wang, Lei

AU - Yang, C.

AU - Schuster, C.

PY - 2022/5/16

Y1 - 2022/5/16

N2 - In this paper, the effect of the orientation of the array elements of a uniform circular antenna array (UCA) on orbital angular momentum (OAM) communication is investigated. For the first time, UCAs are studied in which the elements are rotated in a systematic way around their center by a linearly increasing angle of rotation. It is shown here that these UCAs provide a smaller decrease in transmission over distance for some modes compared to other configurations used, but at the cost of increased mode conversion. For that reason the mode conversion and the decrease of the received mode power over distance are of particular interest. U CAs with dipoles normal and tangential to the array surface are compared. For the latter, the dipoles are rotated around their center with a rotation angle increasing linearly around the U CA. The transmission of the OAM modes is evaluated on a sphere, showing that the direction of the strongest transmission of the OAM modes varies with the rotation of the array elements. It is shown that the U CAs with radial (or azimuthal) dipoles provide the best mode transmission with little mode conversion. All investigations have been carried out using a tool based on the method of moments (MoM).

AB - In this paper, the effect of the orientation of the array elements of a uniform circular antenna array (UCA) on orbital angular momentum (OAM) communication is investigated. For the first time, UCAs are studied in which the elements are rotated in a systematic way around their center by a linearly increasing angle of rotation. It is shown here that these UCAs provide a smaller decrease in transmission over distance for some modes compared to other configurations used, but at the cost of increased mode conversion. For that reason the mode conversion and the decrease of the received mode power over distance are of particular interest. U CAs with dipoles normal and tangential to the array surface are compared. For the latter, the dipoles are rotated around their center with a rotation angle increasing linearly around the U CA. The transmission of the OAM modes is evaluated on a sphere, showing that the direction of the strongest transmission of the OAM modes varies with the rotation of the array elements. It is shown that the U CAs with radial (or azimuthal) dipoles provide the best mode transmission with little mode conversion. All investigations have been carried out using a tool based on the method of moments (MoM).

KW - orbital angular momentum (OAM)

KW - uniform circular array (UCA)

M3 - Conference contribution/Paper

SN - 9783982039725

T3 - 2022 German Microwave Conference, GeMiC 2022

SP - 164

EP - 167

BT - 2022 German Microwave Conference, GeMiC 2022

PB - IEEE

ER -