Group velocities of a surface electromagnetic wave along an impedance two-layer medium

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Abstract

The propagation of a surface electromagnetic wave in a two-layer impedance medium is considered. Based on the Leontovich-Lighthill-Rytov identity theorem, the velocities of group waves in each layer of a two-layer model of a highly inductive impedance medium are established. It is found that in the atmosphere, the group velocity is slightly less than the speed of light in a vacuum and is different from the phase velocity of the wave; in the dielectric first layer, the group velocity depends on the permittivity of the medium and is also less than the speed of light; in the conducting second layer, the conducting base of the two-layer medium, the group velocity is noticeably less than the speed of light.

About the authors

V. K. Balkhanov

Institute of Physical Materials Science of the Russian Academy of Sciences

Author for correspondence.
Email: buddich@mail.ru
Russian Federation, St. Sakhyanovoy, 6, Ulan-Ude, 670047

Yu. B. Bashkuev

Institute of Physical Materials Science of the Russian Academy of Sciences

Email: buddich@mail.ru
Russian Federation, St. Sakhyanovoy, 6, Ulan-Ude, 670047

References

  1. Рытов С. М. // ЖЭТФ. 1947. Т. 17. № 10. С. 930.
  2. Балханов В. К., Башкуев Ю. Б. Электромагнитный поверхностный импеданс, геоэлектрические однородные, двухслойные и градиентные среды, интеграл Зоммерфельда. 2-е изд. М.: Русайнс, 2022.

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