Publication detail

Modeling Electromagnetic Nanostructures and Experimenting with Nanoelectric Elements to Form Periodic Structures

STEINBAUER, M. PERNICA, R. ZUKAL, J. KADLEC, R. BACHOREC, T. FIALA, P.

Original Title

Modeling Electromagnetic Nanostructures and Experimenting with Nanoelectric Elements to Form Periodic Structures

Type

journal article - other

Language

English

Original Abstract

We discuss the numerical modeling of electromagnetic, carbon-based periodic structures, including graphene, graphane, graphite, and graphyne. The materials are suitable for sub-micron sensors, electric lines, and other applications, such as those within biomedicine, photonics, nano- and optoelectronics; in addition to these domains and branches, the applicability extends into, for example, microscopic solutions for modern SMART elements. The proposed classic and hybrid numerical models are based on analyzing a periodic structure with a high repeatability, and they exploit the concept of a carbon structure having its fundamental dimension in nanometers. The models can simulate harmonic and transient processes; are capable of evaluating the actual random motion of an electric charge as a source of spurious signals; and consider the parameters of harmonic signal propagation along the structure. The results obtained from the analysis are utilizable for the design of sensing devices based on carbon periodic structures and were employed in experiments with a plasma generator. The aim is to provide a broader overview of specialized nanostructural modeling, or, more concretely, to outline a model utilizable in evaluating the propagation of a signal along a structure’s surface.

Keywords

nanomaterial, graphene, graphite, experimental modeling, hydrogen bond, periodic structure

Authors

STEINBAUER, M.; PERNICA, R.; ZUKAL, J.; KADLEC, R.; BACHOREC, T.; FIALA, P.

Released

10. 12. 2020

Publisher

Lublin University of Technology

Location

Polsko

ISBN

2083-0157

Periodical

Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska

Year of study

10

Number

4

State

Republic of Poland

Pages from

4

Pages to

14

Pages count

11

URL

Full text in the Digital Library

BibTex

@article{BUT167332,
  author="Miloslav {Steinbauer} and Roman {Pernica} and Jiří {Zukal} and Radim {Kadlec} and Tibor {Bachorec} and Pavel {Fiala}",
  title="Modeling Electromagnetic Nanostructures and Experimenting with Nanoelectric Elements to Form Periodic Structures",
  journal="Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska",
  year="2020",
  volume="10",
  number="4",
  pages="4--14",
  doi="10.35784/iapgos.2383",
  issn="2083-0157",
  url="https://ph.pollub.pl/index.php/iapgos/article/view/2383"
}

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