Description
Fundamentals and Applications of Nonlinear Nanophotonics includes key concepts of nonlinear nanophotonics, computational and modeling techniques to design these materials, and the latest advances. This book addresses the scientific literature on nanophotonics while most existing books focus almost exclusively on the linear aspects of light-matter interaction at the nanoscale. Sections cover nonlinear optics of sub-wavelength photonic nanostructured materials, review nonlinear optics of bound-states in the continuum, nonlinear optics of chiral plasmonic metasurfaces, nonlinear hyperbolic nanomaterials, nonlinear topological photonics, plasmonic lattice solitons, and more.This book is suitable for academics and industry professionals working in the discipline of materials science, engineering and nanotechnology.- Discusses advances in nonlinear optics research such as plasmonics, topological photonics and emerging materials- Reviews the latest computational methods to model and design nonlinear photonic materials- Introduces key principles of advanced concepts in nonlinear optics of bound-states in a continuum and symmetries in nonlinear nano-optics
Table of Contents
1. Introduction to Nonlinear Optics at the Nanoscale2. Symmetry governed nonlinear selection rules in nanophotonics3. Nonlinear topological photonics4. Photon management in harmonic generation at the nanoscale5. Nonlinear optics and applications of chiral plasmonic metasurfaces6. Second-order nonlinear optical scattering from nanoparticles7. Frequency conversion at the nanoscale in random nonlinear media8. Nonlinear metasurfaces for generation of quantum photon-pair states9. Nonlinear optical phenomena in subwavelength photonic nanowires10. Subwavelength Optical Solitons11. Nonlinear Optics and Photonics Applications of Two-Dimensional Materials12. Computational methods and techniques for nonlinear nano-optics
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