In this paper we propose and analyse adaptive finite element methods for computing the band structure of 2D periodic photonic crystals. The problem can be reduced to the computation of the discrete spectra of each member of a family of periodic Hermitian eigenvalue problems on a unit cell, parametrised by a two-dimensional parameter - the quasimomentum. These eigenvalue problems involve non-coercive elliptic operators with generally discontinuous coefficients and are solved by adaptive finite elements. We propose an error estimator of residual type and show it is reliable and efficient for each eigenvalue problem in the family. In particular we prove that if the error estimator converges to zero then the distance of the computed eigenfuncti...
Photonic Crystals (PCs) are materials with a periodically modulated dielectric constant, through whi...
The first part of this paper is devoted to the approximative solution of linear and Hermitian eigenv...
In this paper, we consider the optimal design of photonic crystal structures for two-dimensional squ...
In this paper we propose and analyze a hp-adaptive discontinuous finite element method for computing...
In this paper we propose and analyze a hp-adaptive discontinuous finite element method for computi...
We prove the convergence of an adaptive finite element method for computing the band structure of tw...
We prove the convergence of an adaptive finite element method for computing the band structure of 2D...
AbstractIn this paper we propose and analyze an hp-adaptive discontinuous finite element method for ...
We study the propagation of light in a three-dimensional periodic photonic crystal, of which the ele...
The first part of this paper is devoted to the modeling of wave propagation inside a perfect two-dim...
Photonic crystals are refractive materials with a certain periodic structure. By the Floquet-B...
This paper considers the numerical computation of the photonic band structure of periodic materials ...
AbstractIn this paper we propose a new finite element frequency domain (FEFD) method to compute the ...
Photonic crystals are materials with periodically modulated dielectric constant, through which certa...
In this paper we propose and analyse an error estimator suitable for \(hp\)-adaptive continuous fini...
Photonic Crystals (PCs) are materials with a periodically modulated dielectric constant, through whi...
The first part of this paper is devoted to the approximative solution of linear and Hermitian eigenv...
In this paper, we consider the optimal design of photonic crystal structures for two-dimensional squ...
In this paper we propose and analyze a hp-adaptive discontinuous finite element method for computing...
In this paper we propose and analyze a hp-adaptive discontinuous finite element method for computi...
We prove the convergence of an adaptive finite element method for computing the band structure of tw...
We prove the convergence of an adaptive finite element method for computing the band structure of 2D...
AbstractIn this paper we propose and analyze an hp-adaptive discontinuous finite element method for ...
We study the propagation of light in a three-dimensional periodic photonic crystal, of which the ele...
The first part of this paper is devoted to the modeling of wave propagation inside a perfect two-dim...
Photonic crystals are refractive materials with a certain periodic structure. By the Floquet-B...
This paper considers the numerical computation of the photonic band structure of periodic materials ...
AbstractIn this paper we propose a new finite element frequency domain (FEFD) method to compute the ...
Photonic crystals are materials with periodically modulated dielectric constant, through which certa...
In this paper we propose and analyse an error estimator suitable for \(hp\)-adaptive continuous fini...
Photonic Crystals (PCs) are materials with a periodically modulated dielectric constant, through whi...
The first part of this paper is devoted to the approximative solution of linear and Hermitian eigenv...
In this paper, we consider the optimal design of photonic crystal structures for two-dimensional squ...