Q
Qaisar Abbas Naqvi
Researcher at Quaid-i-Azam University
Publications - 230
Citations - 3396
Qaisar Abbas Naqvi is an academic researcher from Quaid-i-Azam University. The author has contributed to research in topics: Plane wave & Scattering. The author has an hindex of 29, co-authored 217 publications receiving 3103 citations. Previous affiliations of Qaisar Abbas Naqvi include National University of Science and Technology & King Saud University.
Papers
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Journal ArticleDOI
Electromagnetic scattering from a perfect electromagnetic conductor cylinder buried in a dielectric half-space
Shakeel Ahmed,Qaisar Abbas Naqvi +1 more
TL;DR: In this article, an analytical solution for the electromagnetic scattering from a perfect electromagnetic conducting circular cylinder, embedded in the dielectric half-space, was presented, which utilizes the spectral (plane wave) representations of the fields and accounts for all the multiple interactions between the buried circular cylinder and the interface separating the two half spaces.
Book ChapterDOI
On electromagnetic wave propagation in fractional space
TL;DR: In this article, exact solutions of different forms of wave equation in D-dimensional fractional space are provided, which describe the phenomenon of electromagnetic wave propagation in fractional spaces, which can effectively describe the wave propagation phenomenon in fractal media.
Journal ArticleDOI
Diffraction of electromagnetic wave by disk and circular hole in a perfectly conducting plane
Kohei Hongo,Qaisar Abbas Naqvi +1 more
TL;DR: In this article, the scattering of electromagnetic plane wave by a perfectly conducting disk is formulated rigorously in a form of the dual integral equations (abbreviated as DIE), where the unknowns are the induced surface current and the tangential components of the electric field on the disk.
Journal ArticleDOI
An Exact Solution of the Cylindrical Wave Equation for Electromagnetic Field in Fractional Dimensional Space
TL;DR: In this paper, an exact solution of cylindrical wave equation for electromagnetic fleld in fractional dimensional space was obtained. And the results were recovered from fractional solution when integer dimensional space is considered.