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Effective parameters of periodic electromagnetic structures from Kramers-Kronig relations

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Effective parameters of periodic electromagnetic structures from Kramers-Kronig relations
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Effective parameters of periodic electromagnetic structures from Kramers-Kronig relations extended to spatially dispersive media
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27
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CC Attribution - NonCommercial - NoDerivatives 4.0 International:
You are free to use, copy, distribute and transmit the work or content in unchanged form for any legal and non-commercial purpose as long as the work is attributed to the author in the manner specified by the author or licensor.
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Abstract
Effective properties of infinite periodic structures are governed by the dispersion law of the Bloch waves. A modeling of the dispersion law is proposed for all frequencies and wave vectors. This modeling is based on the complex analytic structure of the Bloch spectrum and on the Kramers-Kronig expression extended to spatially dispersive media. Several explicit formulas for effective parameters will be given for multilayer stacks, for all frequencies and wave vectors, in situations where a perturbation approach can be applied. The relevance of the obtained effective parameters will be discussed.