AbstractThe performance of photonic crystal devices can depend strongly on their geometry. Alas, their fundamental physics offers relatively little by way of pointers in terms of optimum shapes, so numerical design search techniques must be used in an attempt to determine high performance layouts. We discuss strategies for solving this type of optimization problem, the main challenge of which is the conflict between the enormous size of the space of potentially useful designs and the relatively high computational cost of evaluating the performance of putative shapes. The optimization technique proposed here operates over increasing levels of fidelity, both in terms of the resolution of its non-parametric shape definition and in terms of the...
Modern photonic devices are characterized by a large number of parameters and the need for an “holis...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
This thesis is located at the interface between two fields, that of photonics and that of numerical ...
The performance of photonic crystal devices can depend strongly on their geometry. Alas, their funda...
We perform full 3D topology optimization (in which “every voxel” of the unit cell is a degree of fre...
Periodic structures consisting of dielectric material, i.e. photonic crystals, are capable of prohib...
It is often the case that the computed optimal solution of an optimization problem cannot be impleme...
Photonic crystals are devices with periodically modulated dielectric constant, designed to exhibit b...
We present rigorous optimization and design of three-dimensional photonic-crystal (PhC) structures i...
Photonic crystal (PhC) waveguides are used for a wide range of applications with diverse performance...
Photonic band gap structures and their applications have gained a great deal of interest in recent y...
In this paper, a fast and robust optimization scheme is presented and applied to the optimal design ...
Over the last two decades, silicon photonics has rapidly matured, leading to a growing interest in b...
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...
Modern photonic devices are characterized by a large number of parameters and the need for an “holis...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
This thesis is located at the interface between two fields, that of photonics and that of numerical ...
The performance of photonic crystal devices can depend strongly on their geometry. Alas, their funda...
We perform full 3D topology optimization (in which “every voxel” of the unit cell is a degree of fre...
Periodic structures consisting of dielectric material, i.e. photonic crystals, are capable of prohib...
It is often the case that the computed optimal solution of an optimization problem cannot be impleme...
Photonic crystals are devices with periodically modulated dielectric constant, designed to exhibit b...
We present rigorous optimization and design of three-dimensional photonic-crystal (PhC) structures i...
Photonic crystal (PhC) waveguides are used for a wide range of applications with diverse performance...
Photonic band gap structures and their applications have gained a great deal of interest in recent y...
In this paper, a fast and robust optimization scheme is presented and applied to the optimal design ...
Over the last two decades, silicon photonics has rapidly matured, leading to a growing interest in b...
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...
Modern photonic devices are characterized by a large number of parameters and the need for an “holis...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
This thesis is located at the interface between two fields, that of photonics and that of numerical ...