1999
DOI: 10.1109/50.802996
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Optical and confinement properties of two-dimensional photonic crystals

Abstract: Abstract-We describe experiments on a quasi-two-dimensional (2-D) optical system consisting of a triangular array of air cylinders etched through a laser-like Ga(Al)As waveguiding heterostructure. Such a configuration is shown to yield results very well approximated by the infinite 2-D photonic crystal (PC). We first present a set of measurements of the optical properties (transmission, reflection, and diffraction) of slabs of these photonic crystals, including the case of in-plane Fabry-Perot cavities formed … Show more

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Cited by 221 publications
(136 citation statements)
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“…1 shows examples of a single-line-defect waveguide (a so-called W1 waveguide) in a photonic-crystal slab made in SOI. Unlike 3-D photonic crystals, the confinement in the vertical direction is not necessarily perfect, which can result in out-of-plane scattering and can cause leakage of light [8], [9].…”
Section: Photonic Crystalsmentioning
confidence: 99%
“…1 shows examples of a single-line-defect waveguide (a so-called W1 waveguide) in a photonic-crystal slab made in SOI. Unlike 3-D photonic crystals, the confinement in the vertical direction is not necessarily perfect, which can result in out-of-plane scattering and can cause leakage of light [8], [9].…”
Section: Photonic Crystalsmentioning
confidence: 99%
“…Sugimoto et al [13] fabricated and characterised 2D AlGaAs photonic crystal slabs by electron lithography in combination with dry etching. In terms of dimensionality, 2D and 1D counterparts are more feasible to fabrication by existing techniques but they may suffer from diffraction losses along the unconfined spatial directions [14][15][16]. Yet, these losses can be reduced significantly by index guided [17] or again 2D photonic crystal based [18] cladding layers in the perpendicular (out of propagation plane) direction.…”
Section: Introductionmentioning
confidence: 99%
“…This procedure can be realized at sub-micrometric wavelength scales and allows for the controlled introduction of linear and point defects. A main problem however concerns the control of light propagation in the third (vertical) dimension: even in the case of a waveguide-embedded 2D photonic crystal, radiation losses due to out-of-plane diffraction in the vertical direction cannot be eliminated for photonic modes which lie above the light line [15][16][17].…”
Section: Introductionmentioning
confidence: 99%