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@Article{RabeloLacaFernSant:2012:ScAnPl,
               author = "Rabelo, N. R. and Lacava, J. C. da S. and Fernandes, D. and 
                         Sant'Anna, Sidnei Joao Siqueira",
          affiliation = "Laborat{\'o}rio de Antenas e Propaga{\c{c}}{\~a}o, Instituto 
                         Tecnol{\'o}gico de Aeron{\'a}utica, Pr. Mal. Eduardo Gomes, 50, 
                         12228-900 S{\~a}o Jos{\'e} dos Campos-SP, Brazil and 
                         Laborat{\'o}rio de Antenas e Propaga{\c{c}}{\~a}o, Instituto 
                         Tecnol{\'o}gico de Aeron{\'a}utica, Pr. Mal. Eduardo Gomes, 50, 
                         12228-900 S{\~a}o Jos{\'e} dos Campos-SP, Brazil and 
                         Laborat{\'o}rio de Antenas e Propaga{\c{c}}{\~a}o, Instituto 
                         Tecnol{\'o}gico de Aeron{\'a}utica, Pr. Mal. Eduardo Gomes, 50, 
                         12228-900 S{\~a}o Jos{\'e} dos Campos-SP, Brazil and {Instituto 
                         Nacional de Pesquisas Espaciais (INPE)}",
                title = "Scattering analysis of planar electric and magnetic dipoles in 
                         multilayered chiral structures",
              journal = "Journal of Microwaves, Optoelectronics and Electromagnetic 
                         Applications",
                 year = "2012",
               volume = "11",
               number = "1",
                pages = "214--229",
                month = "June",
             keywords = "chiral medium, electromagnetic scattering, Green’s functions, 
                         layered media, radar remote sensing, spectral fields.",
             abstract = "This paper describes a model for the analysis of multilay-ered 
                         chiral structures containing planar electric and magnetic 
                         scattering elements of arbitrary shape, illuminated by an 
                         elliptically polarized plane wave. The particular case of a single 
                         chiral layer is analyzed and the scattering matrices for single 
                         and dual electric and/or magnetic dipole distributions are derived 
                         in an original way. As an application, the polarimetric response 
                         of a short electric or magnetic dipole is directly obtained from 
                         their scattering matrix.",
                  doi = "10.1590/s2179-10742012000100018",
                  url = "http://dx.doi.org/10.1590/s2179-10742012000100018",
                 issn = "2179-1074",
                label = "lattes: 3997386421385499 4 RabeloSant:2012:ScAnPl",
             language = "en",
           targetfile = "Scattering Analysis of Planar Electric and.pdf",
        urlaccessdate = "30 abr. 2024"
}


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