Vector Potential of a Strongly Inductive Impedance Media

1
Vasiliy K. Balkhanov
Vasiliy K. Balkhanov
2
Yuriy B. Bashkuev
Yuriy B. Bashkuev
1 Institute of Physical Materials Science of the Siberian Branch

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Introduced the concept of a strongly inductive impedance media. Vector potential such media expressed in the wave zone as Sommerfeld integrals. This integral is calculated for strongly inductive media, which implies the existence of surface electromagnetic wave. Electrical properties of double-layer strongly inductive media described one size-listed surface impedance. Article vector potential in free space and in underlying media expressed through impedance. It is shown that an electromagnetic wave is exponentially fades in free space and in the bottom layer, and live freely distributed the first dielectric layer. Therefore it is called surface electromagnetic wave. The impedance values for some areas strongly inductive Earth surface.

13 Cites in Articles

References

  1. G Makarov,V Novikov,S Rybachek (1991). Propagation of Electromagnetic Waves over the Earth Surface.
  2. E Feynberg (1999). Propagation of Radio Waves Along the Earth.
  3. James Wait (1996). Electromagnetic waves in stratified media.
  4. I Lindell,E Alanen (1984). Exact image theory for the Sommerfeld half-space problem, part II: Vertical electrical dipole.
  5. Hong‐qi Zhang,Wei‐yan Pan (2002). Electromagnetic field of a vertical electric dipole on a perfect conductor coated with a dielectric layer.
  6. L Kotov,N Kraev,N Tikhomirov (2004). Basic theory of Propagation Radio Waves over the Earth's Surface.
  7. K Balkhanov,Yu Bashkuev (2005). Principles of the Method of Surface Impedance (Publishing House of the Buryat Scientific Center SB RAS.
  8. Balkhanov Vasiliy K.,Bashkuev Yuriy B.,Angarkhaeva Ludmila Kh. (2017). Impedance Strongly Inductive Two-Layer Media.
  9. V Balkhanov,Yu. Bashkuev,V Advokatov (2018). On the Possibility of the Existence of a Surface Electromagnetic Wave in the Permafrost Area.
  10. B Yu,V Bashkuev,M Khaptanov,Dembelov (2010). Unknown Title.
  11. L Landau,E Lifshitz (1987). RELATIVISTIC FLUID DYNAMICS.
  12. Leonid Brekhovskikh,Oleg Godin (1998). Monochromatic Plane-Wave Reflection from Continuously Layered Media.
  13. V Balkhanov,Yu. Bashkuev (2017). Characteristics of the electromagnetic wave field far away from the radiation source.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

Vasiliy K. Balkhanov. 2018. \u201cVector Potential of a Strongly Inductive Impedance Media\u201d. Global Journal of Science Frontier Research - A: Physics & Space Science GJSFR-A Volume 18 (GJSFR Volume 18 Issue A11): .

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GJSFR Volume 18 Issue A11
Pg. 25- 30
Journal Specifications

Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

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GJSFR-A Classification: FOR Code: 020399
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v1.2

Issue date

November 22, 2018

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English

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Introduced the concept of a strongly inductive impedance media. Vector potential such media expressed in the wave zone as Sommerfeld integrals. This integral is calculated for strongly inductive media, which implies the existence of surface electromagnetic wave. Electrical properties of double-layer strongly inductive media described one size-listed surface impedance. Article vector potential in free space and in underlying media expressed through impedance. It is shown that an electromagnetic wave is exponentially fades in free space and in the bottom layer, and live freely distributed the first dielectric layer. Therefore it is called surface electromagnetic wave. The impedance values for some areas strongly inductive Earth surface.

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Vector Potential of a Strongly Inductive Impedance Media

Vasiliy K. Balkhanov
Vasiliy K. Balkhanov Institute of Physical Materials Science of the Siberian Branch
Yuriy B. Bashkuev
Yuriy B. Bashkuev

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