Characteristics of electromagnetic wave transmission and reflection from isotropic plasma coated circular nihility cylinder
Theoretical investigation has been carried out to study the scattering and transmission of electromagnetic energy from isotropic plasma coated circular nihility cylinder. The physical modeling of the problem is done in frame work of classical scattering theory. All the fields are expanded in terms o...
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Veröffentlicht in: | AIP advances 2019-04, Vol.9 (4), p.045320-045320-6 |
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description | Theoretical investigation has been carried out to study the scattering and transmission of electromagnetic energy from isotropic plasma coated circular nihility cylinder. The physical modeling of the problem is done in frame work of classical scattering theory. All the fields are expanded in terms of cylindrical vector wave functions (CVWFs). The analytical as well as numerical solution for both Transverse Electric (TE) and Transverse Magnetic (TM) polarizations is presented. The unknown scattering coefficients are computed by implementing the boundary conditions at each interface (free space/plasma and plasma/nihility). The influence of plasma parameters i.e., plasma density (ND) and effective collision frequency (v) on the bistatic echo width is analyzed and it is concluded that the plasma coating can be used to control and tune the scattering amplitude. Further it is also concluded that for the case ω > ωp the scattering amplitude is much less than for the case ω < ωp. Under special conditions, the results of present work compared with the published literature and good agreement is found. |
doi_str_mv | 10.1063/1.5087109 |
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H. ; Bashir, M. ; Yaqoob, M. Z. ; Ghaffar, A. ; Alkanhal, Majeed ; Khan, Y.</creator><creatorcontrib>Shehzad, M. H. ; Bashir, M. ; Yaqoob, M. Z. ; Ghaffar, A. ; Alkanhal, Majeed ; Khan, Y.</creatorcontrib><description>Theoretical investigation has been carried out to study the scattering and transmission of electromagnetic energy from isotropic plasma coated circular nihility cylinder. The physical modeling of the problem is done in frame work of classical scattering theory. All the fields are expanded in terms of cylindrical vector wave functions (CVWFs). The analytical as well as numerical solution for both Transverse Electric (TE) and Transverse Magnetic (TM) polarizations is presented. The unknown scattering coefficients are computed by implementing the boundary conditions at each interface (free space/plasma and plasma/nihility). The influence of plasma parameters i.e., plasma density (ND) and effective collision frequency (v) on the bistatic echo width is analyzed and it is concluded that the plasma coating can be used to control and tune the scattering amplitude. Further it is also concluded that for the case ω > ωp the scattering amplitude is much less than for the case ω < ωp. 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The influence of plasma parameters i.e., plasma density (ND) and effective collision frequency (v) on the bistatic echo width is analyzed and it is concluded that the plasma coating can be used to control and tune the scattering amplitude. Further it is also concluded that for the case ω > ωp the scattering amplitude is much less than for the case ω < ωp. Under special conditions, the results of present work compared with the published literature and good agreement is found.</description><subject>Amplitudes</subject><subject>Boundary conditions</subject><subject>Cylinders</subject><subject>Cylindrical waves</subject><subject>Electromagnetic radiation</subject><subject>Electromagnetic wave transmission</subject><subject>Energy transmission</subject><subject>Mathematical models</subject><subject>Plasma</subject><subject>Plasma density</subject><subject>Scattering amplitude</subject><subject>Scattering coefficient</subject><subject>Wave functions</subject><subject>Wave reflection</subject><issn>2158-3226</issn><issn>2158-3226</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><sourceid>DOA</sourceid><recordid>eNp9kd9LHDEQx5dioaI-9D8I9MnC2fza291HOdQKQl_a5zCTTDTH3mab5CyH_7y5nlhBaF4mM3zmO8l3muaz4BeCL9U3cdHyvhN8-NAcS9H2CyXl8ujN_VNzlvOa16MHwXt93DytHiCBLZRCLsFmFj2jkWxJcQP3E9Ua-wOPxEqCKW9CziFODCbHEvk9t099hVnIsTbNlZ9HyBtgNkIhx2xIdjtCYlN4CGMoO2Z3Y5gcpdPmo4cx09lLPGl-XV_9XH1f3P24uV1d3i2sln1ZkNdEgrcOPCGgbd2AQi09CqkRPGrUPSCSkgJx2XXodSetJuydFxKdOmluD7ouwtrMKWwg7UyEYP4WYro3kOpHRzJay0HJdqC2VZqj7_0gBOcoLdQ5aKvWl4PWnOLvLeVi1nGbpvp8I6VQbVedVZU6P1A2xZyrU69TBTf7VRlhXlZV2a8HNttQYO_nK_wY0z_QzM7_D36v_AyjDqXt</recordid><startdate>201904</startdate><enddate>201904</enddate><creator>Shehzad, M. 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Z.</creatorcontrib><creatorcontrib>Ghaffar, A.</creatorcontrib><creatorcontrib>Alkanhal, Majeed</creatorcontrib><creatorcontrib>Khan, Y.</creatorcontrib><collection>AIP Open Access Journals</collection><collection>CrossRef</collection><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>DOAJ Directory of Open Access Journals</collection><jtitle>AIP advances</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Shehzad, M. H.</au><au>Bashir, M.</au><au>Yaqoob, M. 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The analytical as well as numerical solution for both Transverse Electric (TE) and Transverse Magnetic (TM) polarizations is presented. The unknown scattering coefficients are computed by implementing the boundary conditions at each interface (free space/plasma and plasma/nihility). The influence of plasma parameters i.e., plasma density (ND) and effective collision frequency (v) on the bistatic echo width is analyzed and it is concluded that the plasma coating can be used to control and tune the scattering amplitude. Further it is also concluded that for the case ω > ωp the scattering amplitude is much less than for the case ω < ωp. Under special conditions, the results of present work compared with the published literature and good agreement is found.</abstract><cop>Melville</cop><pub>American Institute of Physics</pub><doi>10.1063/1.5087109</doi><tpages>6</tpages><orcidid>https://orcid.org/0000-0003-3673-0411</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Amplitudes Boundary conditions Cylinders Cylindrical waves Electromagnetic radiation Electromagnetic wave transmission Energy transmission Mathematical models Plasma Plasma density Scattering amplitude Scattering coefficient Wave functions Wave reflection |
title | Characteristics of electromagnetic wave transmission and reflection from isotropic plasma coated circular nihility cylinder |
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