Photonics Research, Volume. 6, Issue 4, 282(2018)
Enhanced complete photonic bandgap in a moderate refractive index contrast chalcogenide-air system with connected-annular-rods photonic crystals
Fig. 1. Schematic structures of the proposed CARPCs. The black color represents chalcogenide glass, and the white color represents air. (a) Triangular-lattice CARPC. (b) Square-lattice CARPC.
Fig. 2. Typical normalized CPBG bandwidth contour maps for CARPC with the triangular lattice. (a)–(c) Contour maps as functions of outer radius (
Fig. 3. Typical normalized CPBG bandwidth contour maps for CARPC with the square lattice. (a)–(c) Contour maps as functions of outer radius (
Fig. 4. Photonic band structures for the optimized CARPCs with maximum normalized 2D CPBGs. (a) Triangular lattice CARPC with
Fig. 5. Typical extreme normalized frequencies (the top extreme points in the lower dielectric band and bottom extreme points in the upper air band which fix the CPBG widths) at CPBG edges and the corresponding normalized CPBG width as functions of
Fig. 6. Evolution of the typical key photonic bands (band 5 and band 6 that determine the CPBG widths) for square-lattice CARPCs with fixed
Fig. 7. Typical field distributions of the extreme CPBG edge modes for triangular lattice CARPCs with fixed
Fig. 8. Typical field distributions of the extreme CPBG edge modes for square-lattice CARPCs with fixed
Fig. 9. Normalized CPBG as a function of refractive index of material for three different optimized square-lattice PCs. The black curve is for the referenced connected-solid-rods chalcogenide PC with
Fig. 10. Photonic band structure, reflectivity spectra, and key configuration of the time domain simulation for the optimized square-lattice CARPC of index contrast 2.34:1. (a) Photonic band structure for CARPC with
Fig. 11. Quality factor of the square-lattice CARPC cavity as a function of the number of square rings surrounding the defect and field distributions of the cavity modes for the two polarizations. (a) Quality factor of the square-lattice CARPC cavity as a function of the number of square rings surrounding the defect, and the left upper inset shows a schematic structure of the square-lattice CARPC cavity with
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Jin Hou, Chunyong Yang, Xiaohang Li, Zhenzhou Cao, Shaoping Chen, "Enhanced complete photonic bandgap in a moderate refractive index contrast chalcogenide-air system with connected-annular-rods photonic crystals," Photonics Res. 6, 282 (2018)
Category: Photonic Crystals and Devices
Received: Dec. 8, 2017
Accepted: Jan. 29, 2018
Published Online: Aug. 1, 2018
The Author Email: Jin Hou (houjin@mail.scuec.edu.cn)