We describe a surface integral-equation (SIE) method suitable for reliable computation of electromagnetic fields scattered by 2D periodic gratings in homogeneous 3D space in which the gratings may consist of high permittivity dielectric materials and metals. More in particular we brie y describe the formulation, the discretization and efficient evaluation of the Quasi Periodic Green Function (QPGF) and its gradient using Ewald's method. We present a case study to illustrate the method's capability of handling high permittivity dielectric materials and a second case study to demonstrate the effectiveness and indispensability of interpolating the QPGF and its gradient using tables with precomputed values
We present efficient methods for computing wave scattering by diffraction gratings that exhibit two-...
We present efficient methods for computing wave scattering by diffraction gratings that exhibit two-...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electroma...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
A surface integral formulation for light scattering on periodic structures is presented. Electric an...
We present efficient methods for computing wave scattering by diffraction gratings that exhibit two-...
We present efficient methods for computing wave scattering by diffraction gratings that exhibit two-...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electroma...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for reliable computation of electromag...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
We describe a surface integral-equation (SIE) method suitable for computation of electromagnetic fie...
A surface integral formulation for light scattering on periodic structures is presented. Electric an...
We present efficient methods for computing wave scattering by diffraction gratings that exhibit two-...
We present efficient methods for computing wave scattering by diffraction gratings that exhibit two-...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...