In this paper, a fast and robust optimization scheme is presented and applied to the optimal design of planar photonic crystals. It is based on a parallel hybrid (stochastic-deterministic) algorithm coupled to a semi-analytic solution of full Maxwell equations by multiple scattering technique. The numerical results of the optimal design of different waveguide bends are presented
A numerical method is developed for computing waveguide bends that preserve as much power in the fun...
The performance of photonic crystal devices can depend strongly on their geometry. Alas, their funda...
The optimization of PhC waveguides is a key issue for successfully designing PhC devices. Since this...
In this paper, a fast and robust optimization scheme is presented and applied to the optimal design ...
Abstract We present new designs of waveguide components in photonic crystal structures exhibiting hi...
We propose a universal and analytic step-by-step method to calculate the optimal 90° and 180° wavegu...
We present sophisticated procedures for the efficient and accurate simulation of photonic crystal st...
Photonic crystal (PhC) waveguides are used for a wide range of applications with diverse performance...
We consider full-wave optimizations of photonic crystals (PhCs) involving dielectric rods to obtain ...
One area of silicon photonics that has attracted attention lately is that of Photonic Crystal(PhC) c...
AbstractThe performance of photonic crystal devices can depend strongly on their geometry. Alas, the...
In this study, 2D square lattice photonic crystal bend structure based on high index rods placed in ...
A numerical method is developed for computing waveguide bends that preserve as much power as possibl...
We have investigated and optimized a 60°-waveguide bend that is implemented in a planar photonic cry...
In this article, we design a low-loss, high-bandwidth Z-bend photonic silicon crystal waveguide bend...
A numerical method is developed for computing waveguide bends that preserve as much power in the fun...
The performance of photonic crystal devices can depend strongly on their geometry. Alas, their funda...
The optimization of PhC waveguides is a key issue for successfully designing PhC devices. Since this...
In this paper, a fast and robust optimization scheme is presented and applied to the optimal design ...
Abstract We present new designs of waveguide components in photonic crystal structures exhibiting hi...
We propose a universal and analytic step-by-step method to calculate the optimal 90° and 180° wavegu...
We present sophisticated procedures for the efficient and accurate simulation of photonic crystal st...
Photonic crystal (PhC) waveguides are used for a wide range of applications with diverse performance...
We consider full-wave optimizations of photonic crystals (PhCs) involving dielectric rods to obtain ...
One area of silicon photonics that has attracted attention lately is that of Photonic Crystal(PhC) c...
AbstractThe performance of photonic crystal devices can depend strongly on their geometry. Alas, the...
In this study, 2D square lattice photonic crystal bend structure based on high index rods placed in ...
A numerical method is developed for computing waveguide bends that preserve as much power as possibl...
We have investigated and optimized a 60°-waveguide bend that is implemented in a planar photonic cry...
In this article, we design a low-loss, high-bandwidth Z-bend photonic silicon crystal waveguide bend...
A numerical method is developed for computing waveguide bends that preserve as much power in the fun...
The performance of photonic crystal devices can depend strongly on their geometry. Alas, their funda...
The optimization of PhC waveguides is a key issue for successfully designing PhC devices. Since this...