Introduction to Nanophotonics
Series: Oxford Graduate Texts;
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Product details:
- Publisher OUP Oxford
- Date of Publication 12 April 2022
- ISBN 9780198786139
- Binding Hardback
- No. of pages670 pages
- Size 253x174x33 mm
- Weight 1352 g
- Language English
- Illustrations 211 line diagrams and colour halftones 178
Categories
Short description:
This book provides an introduction to nanophotonics, a newly emerged and rapidly evolving field combining optics, quantum physics, material sciences, and electrical engineering. It illustrates the theoretical foundations as well as the major advances in the field based on artificial metallic and dielectric nanostructures.
MoreLong description:
The aim of this textbook is to provide an overview of nanophotonics, a discipline which was developed around the turn of the millennium. This unique and rapidly evolving subject area is the result of a collaboration between various scientific communities working on different aspects of light-matter interaction at the nanoscale. These include near-field optics and super-resolution microscopy, photonic crystals, diffractive optics, plasmonics, optoelectronics, synthesis of metallic and semiconductor nanoparticles, two-dimensional materials, and metamaterials.
The book is aimed at graduate students with a background in physics, electrical engineering, material science, or chemistry, as well as lecturers and researchers working within these fields.
The last decade has seen a true revolution in the field of nanophotonics. This textbook provides a comprehensive overview at an introductory level, written by three eminent figures in the field. It will be invaluable to students and researchers alike.
Table of Contents:
Part I - Basics of Electromagnetic Optics
Basics of Electrodynamics of Continuous Media
Radiation
Electrodynamics in Material Media: Constitutive Relations
Propagation
Reflection and Refraction at an Interface
Guided Modes
Basics of Resonators and Cavities
Part II - Optical Properties of Confined Electrons
Semiconductors and Quantum Wells
More Conned Electrons : Quantum Dots and Quantum Wires
Part III - Advanced Concepts in Nanophotonics
Fundamental Concepts of Near-Field Optics
Introduction to Super-Resolution Optical Imaging
Scattering. Green Tensor and Local Density of Electromagnetic States
Part IV - Plasmonics
Propagating Surface Plasmons
Localized Surface Plasmons
Part V - Articial Media: Photonics Crystals and Meta-Materials
Propagation in Periodic Media (I) : Bloch Modes and Homogenization
Propagation in Periodic Media (II): Photonic Crystals
Periodic Waveguide
Metamaterials and Metasurfaces
Part VI - Confined Photons: Nanoantennas, Microcavities and Optoelectronic Devices
Controlling Light-Matter Interaction at the Nanoscale with Cavities and Nanoantennas
From Nanophotonics to Devices
Part VII - Fluctuational Electrodynamics
Fluctuational Electrodynamics