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Resonant grating waveguide structures

IEEE Journal of Quantum Electronics · 1997 · Vol. 33(11) · pp. 2038–2059
D. RosenblattA. SharonAsher A. Friesem

Abstract

Under certain conditions, a resonance phenomenon can occur in waveguide grating structures. Such structures have multilayer configuration, the most basic of which is comprised of a substrate, a thin dielectric layer or semiconductor waveguide layer, and an additional transparent layer in which a grating is etched. When such a structure is illuminated with an incident light beam, part of the beam is directly transmitted and part is diffracted and subsequently trapped in the waveguide layer. Some of the trapped light is then rediffracted outwards, so that it interferes destructively with the transmitted part of the light beam. At a specific wavelength and angular orientation of the incident beam, the structure "resonates"; namely, complete interference occurs and no light is transmitted. This paper reviews previous investigations on the resonance phenomena and presents analytic and numerical models for evaluating the resonance as a function of the geometric and optical parameters of the structures and incident radiation.

Optical Coatings and GratingsPhotonic Crystals and ApplicationsPhotonic and Optical DevicesOpticsGratingGuided-mode resonanceWaveguideDiffraction gratingMaterials scienceBeam (structure)Resonance (particle physics)DiffractionOptoelectronics
Citations
662
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6.53
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References
26
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References
Methods of Theoretical Physics
American Journal of Physics · 1954 · 13,167 citations
A New Theory of Wood’s Anomalies on Optical Gratings
Applied Optics · 1965 · 1,098 citations
Methods of theoretical physics
Journal of the Franklin Institute · 1954 · 4,823 citations
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