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(96) Production(s) de FELBACQ D.
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Light propagation in random dielectric structures
Auteur(s): Felbacq D., Guizal B., Vynck Kevin
Conférence invité: META 08 (Marrakesh, MA, 2008-05-07)
Ref HAL: hal-00807730_v1
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Résumé: On démontre l'existence d'une forte densité d'états autorisant le passage de la lumière dans des structures de piliers diélectriques.
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Effective magnetic activity in an array of dielectric rods
Auteur(s): Felbacq D., Bouchitte Guy
Conférence invité: COST kick-off workshop on Nanophotonics (Varsovie, PL, 2008-04-28)
Ref HAL: hal-00807722_v1
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Résumé: On démontre l'existence d'une activité magnétique artificielle dans un ensemble de résonateurs diélectrique. un développement de la perméabilité est obtenu par une étude asymptotique.
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Metamaterials based on high refractive index rods
Auteur(s): Vynck Kevin, Felbacq D., Centeno Emmanuel, Cabuz A., Cassagne D.
Conference: Meta 08, NATO Advanced Research Workshop (Marrakech, MA, 2008-05-07)
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Second-Harmonic Superlens
Auteur(s): Ciraci Cristian, Centeno Emmanuel, Felbacq D.
Conference: International Workshop on advances in Nanoscale Nonlinear Optics (Rome, IT, 2008-10-08)
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Leaky modes of a left-handed slab
Auteur(s): Moreau Antoine, Felbacq D.
(Article) Publié:
Journal Of The European Optical Society:rapid Publications, vol. 3 p.08032 (2008)
Texte intégral en Openaccess :
Ref HAL: hal-00139875_v3
Ref Arxiv: 0704.0414
DOI: 10.2971/jeos.2008.08032
WoS: 000264659300035
Ref. & Cit.: NASA ADS
Exporter : BibTex | endNote
10 Citations
Résumé: Using complex plane analysis we show that left-handed slab may support either leaky slab waves, which are backward because of negative refraction, or leaky surface waves, which are backward or forward depending on the propagation direction of the surface wave itself. Moreover, there is a general connection between the reflection coefficient of the left-handed slab and the one of the corresponding right-handed slab (with opposite permittivity and permeability) so that leaky slab modes are excited for the same angle of incidence of the impinging beam for both structures. Many negative giant lateral shifts can be explained by the excitation of these leaky modes.
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What is the direction followed by a beam in a photonic medium ?
Auteur(s): Felbacq D., Guizal B.
(Article) Publié:
Optics Letters, vol. 33 p.998-1000 (2008)
Ref HAL: hal-00323416_v1
PMID 18451965
DOI: 10.1364/OL.33.000998
WoS: 000256166900036
Exporter : BibTex | endNote
4 Citations
Résumé: The direction of propagation followed by a monochromatic beam in a periodic structure is generally deduced from the isofrequency diagram, which is related to the group velocity. However, the group velocity is the derivative of ω with respect to the wavenumber, while the behavior of the beam should depend on ω only. In the subwavelength regime, a method for choosing the relevant branch of the isofrequency diagram and relying on the behavior of the system at ω only is described.
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Two-scale approach to the homogenization of membrane photonic crystals
Auteur(s): Felbacq D., Bouchitte G., Guizal B., Moreau A.
(Article) Publié:
Journal Of Nanophotonics, vol. 2 p.pp. 023501 (2008)
Ref HAL: hal-00255910_v1
DOI: 10.1117/1.2884039
WoS: 000262931600036
Exporter : BibTex | endNote
15 Citations
Résumé: Wave propagation and diffraction in a membrane photonic crystal with finite height were studied in the case where the free-space wavelength is large with respect to the period of the structure. The photonic crystals studied are made of materials with anisotropic permittivity and permeability. Use of the concept of two-scale convergence allowed the photonic crystals to be homogenized.
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