Radiation losses of waveguide-based two-dimensional photonic crystals: Positive role of the substrate

Radiation losses occurring in photonic crystals etched into planar waveguides are analyzed using a first-order perturbation approximation. Assuming the incoherent scattering limit, the model indicates that losses diminish as the cladding index approaches the core index. A simple scheme is devised to...

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Veröffentlicht in:Applied physics letters 2000-01, Vol.76 (5), p.532-534
Hauptverfasser: Benisty, H., Labilloy, D., Weisbuch, C., Smith, C. J. M., Krauss, T. F., Cassagne, D., Béraud, A., Jouanin, C.
Format: Artikel
Sprache:eng
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Zusammenfassung:Radiation losses occurring in photonic crystals etched into planar waveguides are analyzed using a first-order perturbation approximation. Assuming the incoherent scattering limit, the model indicates that losses diminish as the cladding index approaches the core index. A simple scheme is devised to include these losses into purely two-dimensional calculations by using an imaginary index. Such calculations are shown to agree with corresponding experimental transmission through near-infrared photonic crystals, reproducing the contrasting behavior of the “dielectric” and “air” band edges.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.125809