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Diffraction of a classical electromagnetic wave by a thin periodic slab: a rigorous approach

dc.contributor.authorFernández Álvarez-Estrada, Ramón
dc.contributor.authorCalvo Padilla, María Luisa
dc.date.accessioned2023-06-21T02:08:14Z
dc.date.available2023-06-21T02:08:14Z
dc.date.issued1978
dc.description© 1978 The Institute of Physics This work is based upon a PhD Thesis presented by M. L. Calvo at the University of Madrid. We thank Professor A. Durán for his direction and encouragement and Professor J. Solana for a critical reading of the manuscript.
dc.description.abstractThe interaction and diffraction of a classical electromagnetic wave by a thin slab characterised by a periodic dielectric permeability is studied rigorously, thereby completing previously existing studies. New integral equations for the induction vector in terms of a suitable Green function, are presented, and a condition which ensures the convergence of their iterations is obtained. A bound for the error of the usual Debye-Born-Rayleigh-Gans approximation to the diffraction amplitudes is given.
dc.description.departmentDepto. de Óptica
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/25966
dc.identifier.doi10.1088/0305-4470/11/9/019
dc.identifier.issn0305-4470
dc.identifier.officialurlhttp://dx.doi.org/10.1088/0305-4470/11/9/019
dc.identifier.relatedurlhttp://iopscience.iop.org
dc.identifier.urihttps://hdl.handle.net/20.500.14352/64950
dc.issue.number9
dc.journal.titleJournal of physics A: Mathematical and general
dc.language.isoeng
dc.page.final1864
dc.page.initial1855
dc.publisherIOP Publishing
dc.rights.accessRightsopen access
dc.subject.cdu535
dc.subject.keywordMultidisciplinary Physics
dc.subject.keywordMathematical Physics
dc.subject.ucmÓptica (Física)
dc.subject.unesco2209.19 Óptica Física
dc.titleDiffraction of a classical electromagnetic wave by a thin periodic slab: a rigorous approach
dc.typejournal article
dc.volume.number11
dcterms.references1. Batterman, B. W. and Cole, H. 1964 Rev. Mod. Phys. 36 631. 2. Born, M. and Wolf, E. 1965 Principles of Optics 3rd edn (Oxford: Pergamon). 3. Calvo M. L. and Durán A. 1975 Nuovo Cim. 29B 277. 4. Ewald P. P. 1965 Rev. Mod. Phys. 37 46. 5. James R. W. 1963 The Dynamical Theory of X-ray Diffraction: Solid State Physics vol 15 ed H. Ehrenreich, F. Seitz and D. Turnbull (New York: Academic). 6. Landau L. and Lifchitz E. 1969 Electrodynamique des Milieux continus (Moscow: Editions Mir) ch 15. 7. Morse P. M. and Feshbach H. 1953 Methods of Theoretical Physics vol 1 (New York: McGraw-Hill) ch 4. 8. Newton R. G. 1966 Scattering Theory of Waves and Particles (New York: McGraw-Hill) ch 3. 9. Slater J. C. 1967 Quantum Theory of Molecules and Solids vol 3 (New York: McGraw-Hill) ch 6. 10. Vienot J. C., Smigielski P. and Royer H. 1971 Holographie Optique (Developpements, Applications) (Paris: Dunod). 11. Zachariasen W. H. 1945 Theory of X-ray Diffraction in Crystals (New York: John Wiley). 12. Ziman J. M. 1964 Principles of the Theory of Solids (London: Cambridge University Press) ch 1.
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relation.isAuthorOfPublication.latestForDiscovery1d9ad3e6-2e32-4c9b-b666-73b1e18d1c0e

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