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Optical properties of the (3.4.6.4) hexagonal Archimedean photonic crystal
J. Nanophoton. 5, 051820 (Jul 19, 2011); http://dx.doi.org/10.1117/1.3611019
We theoretically investigated the optical properties of the lesser known (3.4.6.4) Archimedean photonic crystal. The structure is two dimensional and made of dielectric GaAs rods in air. The calculations of the band structures, equifrequency contours, and simulations of the wave propagation through the structure were performed by the plane wave expansion and finite-difference time-domain methods. With analysis of the gap map and equifrequency contours we obtained frequency ranges for best performance for wave guiding. For those frequency ranges, we designed a new type of waveguide for possible applications in integrated optics. In addition, negative refraction was exhibited by the structure.
© 2011 Society of Photo-Optical Instrumentation Engineers (SPIE)
History
Received Feb 02, 2011
Accepted Jun 27, 2011
Revised Jun 17, 2011
Published online Jul 19, 2011
Corrected Jul 27, 2011
Accepted Jun 27, 2011
Revised Jun 17, 2011
Published online Jul 19, 2011
Corrected Jul 27, 2011
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Djordje Jovanović and Radoš Gajić, "Optical properties of the (3.4.6.4) hexagonal Archimedean photonic crystal",
J. Nanophoton. 5, 051820 (Jul 19, 2011); http://dx.doi.org/10.1117/1.3611019
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EDITORIALLY RELATED
- Errata: Optical properties of the (3.4.6.4) hexagonal Archimedean photonic crystal
Djordje Jovanović et al.
J. Nanophoton. 5, 050103 (2011)JNOACQ000005000001050103000001
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