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Analysis of institutional authors

Zorkun AAuthor

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November 18, 2022
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Proceedings Paper
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Superconductor fractal microstrip patch antenna design and simulation

Publicated to: 26th Ieee Signal Processing And Communications Applications Conference, Siu 2018. 1-4 - 2018-07-05 (), DOI: 10.1109/SIU.2018.8404318

Authors:

Zorkun, AE; Bozbey, A; Ünlü, M
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Affiliations

TOBB Ekon & Teknol Univ, Elekt & Elekt Muhendisligi Bolumu, Ankara, Turkey - Author
TOBB University of Economics and Technology - Author

Abstract

Utilizing supercondutor thin-film materials for microstrip patch antennas leads significantly more efficient and electrically small antenna designs. Methods for estimating surface impedance and resonant frequencies of superconductor materials are given. Robust and more compact matching and feeding network techniques are described. Make use of an electromagnetic simulation tool for simulating antenna parameters. Fractal area reduction is applied and performances of antennas with different resonant frequencies are compared.
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Keywords

FractalMicrostrip patch antennaSuperconductorSurface impedance resonant frequency

Quality index

Impact and social visibility

From the perspective of influence or social adoption, and based on metrics associated with mentions and interactions provided by agencies specializing in calculating the so-called "Alternative or Social Metrics," we can highlight as of 2025-12-19:

  • The use of this contribution in bookmarks, code forks, additions to favorite lists for recurrent reading, as well as general views, indicates that someone is using the publication as a basis for their current work. This may be a notable indicator of future more formal and academic citations. This claim is supported by the result of the "Capture" indicator, which yields a total of: 1 (PlumX).
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Leadership analysis of institutional authors

This work has been carried out with international collaboration, specifically with researchers from: Turkey.

There is a significant leadership presence as some of the institution’s authors appear as the first or last signer, detailed as follows: First Author (ZORKUN, ARAL ERTUG) .

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