This paper systematically investigates the self-collimation behavior in silicon-based triangular-lattice annular photonic crystals (PCs). It is found that, in comparison with normal air-hole PCs, annular PCs more easily suppress the separation between TE-2 and TM-2 bands along the Γ-M direction by increasing the inner radius of annular air rings. Such a feature is quite beneficial in the formation of a flat equi-frequency contour for both polarizations at the same frequency, which means a polarization-insensitive self-collimation (PISC) effect. Further analysis has shown that, to support PISC, the minimum ratio between the inner and outer radii of annular air rings will gradually increase as the outer radius changes from 0.25a to 0.49a. Whe...
© 2015 SPIE. A spatially-variant photonic crystal (SVPC) that can control the spatial propagation of...
In this paper, a new Y-shaped beam splitter is designed by combining the partial band gap with self-...
A spatially-variant photonic crystal (SVPC) that can control the spatial propagation of electromagne...
This paper systematically investigates the self-collimation behavior in silicon-based triangular-lat...
We propose a new compact polarization beam splitter based on the self-collimation effect of two-dime...
Title Polarization-insensitive self-collimation and beam splitterbased on triangular-lattice annular...
Due to unavoidable separation of bands for different polarizations, it is usually difficult to reali...
A novel concept of polarization beam splitting with high polarization extinction ratio is proposed b...
We present theoretical and experimental results of a polarization splitter device that consists of a...
A photonic crystal polarization beam splitter based on photonic band gap and self-collimation effect...
Polarization independent bends and beam splitters for transverse electric (TE) and transverse magnet...
The analysis and simulation result of a 1×3 beam splitter in a two-dimensional square-lattice photon...
In this study, we present the design of a photonic crystal (PC) structure with a hexagonal lattice, ...
<p>A 2D planar self-collimating photonic crystal, based on a dielectric square lattice and a hexagon...
We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-d...
© 2015 SPIE. A spatially-variant photonic crystal (SVPC) that can control the spatial propagation of...
In this paper, a new Y-shaped beam splitter is designed by combining the partial band gap with self-...
A spatially-variant photonic crystal (SVPC) that can control the spatial propagation of electromagne...
This paper systematically investigates the self-collimation behavior in silicon-based triangular-lat...
We propose a new compact polarization beam splitter based on the self-collimation effect of two-dime...
Title Polarization-insensitive self-collimation and beam splitterbased on triangular-lattice annular...
Due to unavoidable separation of bands for different polarizations, it is usually difficult to reali...
A novel concept of polarization beam splitting with high polarization extinction ratio is proposed b...
We present theoretical and experimental results of a polarization splitter device that consists of a...
A photonic crystal polarization beam splitter based on photonic band gap and self-collimation effect...
Polarization independent bends and beam splitters for transverse electric (TE) and transverse magnet...
The analysis and simulation result of a 1×3 beam splitter in a two-dimensional square-lattice photon...
In this study, we present the design of a photonic crystal (PC) structure with a hexagonal lattice, ...
<p>A 2D planar self-collimating photonic crystal, based on a dielectric square lattice and a hexagon...
We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-d...
© 2015 SPIE. A spatially-variant photonic crystal (SVPC) that can control the spatial propagation of...
In this paper, a new Y-shaped beam splitter is designed by combining the partial band gap with self-...
A spatially-variant photonic crystal (SVPC) that can control the spatial propagation of electromagne...