Each presented method is accompanied by examples from nano-optics, including: resonant metal nano-particles placed in a homogeneous medium or on a surface or waveguide; a microstructured gradient-index-lens; the Purcell effect for an emitter in a photonic crystal; the excitation of surface plasmon polaritons by second-harmonic generation in a polymer fiber placed on a thin metal film; and anti-reflective, broadband absorbing or resonant surface microstructures. Each presented method is also accompanied by guidelines for software implementation and exercises.
Features
- Comprehensive introduction to Green’s function integral equation methods for scattering problems in the field of nano-optics
- Detailed explanation of how to discretize and solve integral equations using simple and higher-order finite-element approaches
- Solution strategies for large structures
- Guidelines for software implementation and exercises
- Broad selection of examples of scattering problems in nano-optics
Each presented method is accompanied by examples from nano-optics, including: resonant metal nano-particles placed in a homogeneous medium or on a surface or waveguide; a microstructured gradient-index-lens; the Purcell effect for an emitter in a photonic crystal; the excitation of surface plasmon polaritons by second-harmonic generation in a polymer fiber placed on a thin metal film; and anti-reflective, broadband absorbing or resonant surface microstructures. Each presented method is also accompanied by guidelines for software implementation and exercises.
Features
- Comprehensive introduction to Green’s function integral equation methods for scattering problems in the field of nano-optics
- Detailed explanation of how to discretize and solve integral equations using simple and higher-order finite-element approaches
- Solution strategies for large structures
- Guidelines for software implementation and exercises
- Broad selection of examples of scattering problems in nano-optics

Green's Function Integral Equation Methods in Nano-Optics
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