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Number of results: 11
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Abstract

Owing to their remarkable capability to modify electromagnetic waves at microwave and optical frequencies, metasurfaces are now the subject of a substantial amount of study and find utility in a wide variety of applications. These artificial sheet materials, which are typically made up of metallic patches or dielectric etchings in planar or multi-layer confi¬gurations with a thickness of subwavelength, have the benefits of being lightweight, easy to fabricate, and able to control wave propagation both on the surface and in the free space that surrounds it. This article provides an overview of recent advancements in the discipline and organizes those advancements according to their applications. The one-of-a-kind capabilities of many types of metasurfaces have come to light, beginning with the invention of frequency selective surfaces, reconfigurable intelligent surfaces, and metamaterials. Patterning the metasurface unit cells allows for surface impedance to be altered and modified, which has wide-ranging applications in surface wave absorbers and surface waveguides. First and foremost, the purpose of this review article is to provide introductions to the fundamental metasurface, its important features, and application ideas. The authors address the most recent progress in metamaterial-inspired antennas and how they can be used to miniaturize antennas, increase gain and bandwidth, achieve circular polarization, and inhibit mutual coupling in multiple-input multiple-output (MIMO) antenna systems. In conclusion, exploring the research implications of the metasurface development trend and the significant engineering practical applications are shown in the conclusions.
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Authors and Affiliations

Anitha C.
1 2
Vivek Singh
3 2
ORCID: ORCID
Ajay Kumar Dwivedi
3 2
ORCID: ORCID
Nagesh Kallollu Narayanaswamy
3 2

  1. Department of Electronics and Communication Engineering, SJC Institute of Technology, Chickballapur, Karnataka, India
  2. Visveswaraya Technological University, Belgaum, India
  3. Department of Electronics and Communication Engineering, Nagarjuna College of Engineering and Technology, Bengaluru, Karnataka, India
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Bibliography

S. J. Basiński, Z. S. Basiński,, in Dislocation in Solids, ed. by F. R. N. Nabarro 261, North Holland, Amsterdam, 1979.
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Authors and Affiliations

Marek S. Szczerba
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Bibliography

E. O. Hall, Yield point phenomena in metals and alloys, MacMillan, Londyn (1970)
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Authors and Affiliations

Krzysztof Pieła
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Bibliography

M. Zehetbauer, Key Eng. Mater. 97-98, 287 (1994)
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Authors and Affiliations

Michael Zehetbauer
Borys Mikułowski
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Bibliography

E. Bartosik, H. Frydrych, Materiały XXVII Szkoły Inżynierii Materiałowej, Kraków- Ustroń 125-129, 1999.
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Authors and Affiliations

Jan Ryszard Dąbrowski
Jerzy Frydrych
Hanna Frydrych
Wiktoria Ratuszek
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Bibliography

Z. Malinowski, Prognozowanie pól naprężeń metodą elementów skończonych w materiałach poddawanych dużym odkształceniom plastycznym. Rozprawy Monografie, Nr 13, Wydawnictwa AGH, Kraków 1994.
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Authors and Affiliations

Zbigniew Malinowski
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Bibliography

Corrosion of Metals, Selected Topics, (collective work), Elsevier 1991. J. Sędzimir, Displacement as a Particular Case of Corrosion, 180-219.
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Authors and Affiliations

Jerzy Sędzimir
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Bibliography

M. Kucharsk , Z. Metallkde 77, 393 (1986)
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Authors and Affiliations

Władysław Gąsior
Zbigniew Moser
Janusz Pstruś
Marian Kucharski
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Bibliography

W. Hofman, Lead and Lead Alloys, New York 1970.
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Authors and Affiliations

Dusco Minic
Dragana Zivkovic
Zivan Zivkovic
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Bibliography

R. R. Stanforth, P. D. Turpin, Treatment of EP-Toxic Foundry Waste: Regulatory and Technical Overview. AFS Transactions 98, 261-263 (1990).
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Authors and Affiliations

Iwona Kargulewicz
Mariusz Holtzer
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Bibliography

S. P. Keeler, Sheet Metal Ind. 42, 683 (1965).
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Authors and Affiliations

Jerzy Gronostajski
Zbigniew Gronostajski
Andrzej Matuszak
Adam Niechajowicz
Zbigniew Zimniak

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