1. Basic properties of electromagnetic waves and quantum particles
2. Foundation of nanophotonics: wave optics vs. wave mechanics
2.1 Isomorphism of the Schroedinger and Helmoltz equations
2.2 Propagation over wells and barriers
2.3 Propagation through a potential barrier: evanescent waves and tunneling
2.4 Resonant tunneling in quantum mechanics and optics
3. Electrons and light in periodic structures
4. Quantum confinement effects on the optical properties of matter
5. Applications:
5.1 Stimulated emission devices: lasers
5.2 Semiconductor diode lasers and nanotechnological lasers
6. Nanofabrication techniques:
6.1 Growth methods for two-dimensional nanostructures: Molecular Beam Epitaxy
6.2 Nanolithography
7. Nanoplasmonics
7.1 Optical response of materials: dieletrics and metals
7.2 Surface Plasmon Polaritons at metal/dielectric interfaces
7.3 Metal nanoparticles and Localized Surface Plasmons