Elektronik ve Haberleşme Mühendisliği Bölümü Yayın Koleksiyonu

Permanent URI for this collectionhttps://hdl.handle.net/20.500.12416/260

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  • Article
    Citation - WoS: 1
    Citation - Scopus: 1
    Wave Diffraction by a Perfect Magnetic Conductor Half-Plane Between Free Space and Anisotropic Plasma
    (Elsevier Gmbh, 2020) Umul, Yusuf Ziya
    The diffraction of magnetic polarized electromagnetic plane waves by a perfect magnetic conductor half-screen, located between free space and anisotropic plasma, is studied. The method of transition boundary is used for the solution of the problem. The scattered GO wave is obtained. The diffracted fields are derived with the aid of the scattered GO wave. The uniform expressions of the edge diffracted waves are derived. The behaviors of the evaluated fields are investigated numerically.
  • Article
    Citation - WoS: 1
    Citation - Scopus: 1
    Diffraction by an Anomalously Perfect Reflecting Metasurface Half-Plane
    (Elsevier Gmbh, 2020) Umul, Yusuf Ziya
    The scattering process of plane waves by a half-plane, composed of anomalously perfect reflecting surfaces, is investigated. The solution of the problem is obtained in an original way. The boundary condition of the problem is also taken into account in the construction of the edge diffracted field. The limiting case of the problem is the diffraction of waves by a perfect electric conductor half plane. The obtained field expression are analyzed numerically.
  • Article
    Citation - WoS: 6
    Citation - Scopus: 6
    Scattering of Waves by a Soft-Hard Half-Plane Between Isorefractive Medium
    (Taylor & Francis Ltd, 2017) Umul, Yusuf Ziya
    The scattering of plane waves by a soft-hard half-plane residing between isorefractive medium is studied. The scattered geometrical optics fields are obtained by subtracting the initial geometrical optics fields from the total geometrical optics waves. The diffracted fields are determined by considering the structure of the scattered geometrical optics waves. The uniform expressions for the diffracted fields are derived. The behaviour of the total waves is investigated numerically.