Ever since the first experimental demonstration was reported in 2000, the interest in metamaterials and left-handed media that exhibit a negative refractive index has increased exponentially. Surveying this explosive growth, Physics and Applications of Negative Refractive Index Materials covers the
Physics and Applications of Negative Refractive Index Materials
โ Scribed by S. Anantha Ramakrishna (Author); Tomasz M. Grzegorczyk (Author)
- Publisher
- CRC Press
- Year
- 2008
- Leaves
- 438
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Ever since the first experimental demonstration was reported in 2000, the interest in metamaterials and left-handed media that exhibit a negative refractive index has increased exponentially. Surveying this explosive growth, Physics and Applications of Negative Refractive Index Materials covers the fundamental physical principles and emerging engin
โฆ Table of Contents
Introduction. Metamaterials and Homogenization of Composites. Designing Metamaterials with Negative Material Parameters. Negative Refraction and Photonic Bandgap Materials. Media with e < 0 and ๏ฟฝ < 0: Theory and Properties. Energy and Momentum in Negative Refractive Index Materials. Plasmonics of Media with Negative Material Parameters. Veselago`s Lens Is a Perfect Lens. Designing Super Lenses. Brief Report on Electromagnetic Invisibility. Appendices. References. Index.
โฆ Subjects
Engineering & Technology;Electrical & Electronic Engineering;Electrical Engineering Communications;Optics & optoelectronics;Physical Sciences;Chemistry;Materials Chemistry;Physics;Optoelectronics
๐ SIMILAR VOLUMES
<P>Ever since the first experimental demonstration was reported in 2000, the interest in metamaterials and left-handed media that exhibit a negative refractive index has increased exponentially. Surveying this explosive growth, <STRONG>Physics and Applications of Negative Refractive Index Materials
This book deals with the subject of optical and electronic negative refraction (NR) and negative index materials NIM). Diverse approaches for achieving NR and NIM are covered, such as using photonic crystals, phononic crystals, split-ring resonators (SRRs) and continuous media, focusing of waves, gu
This book deals with the subject of optical and electronic negative refraction (NR) and negative index materials NIM). Diverse approaches for achieving NR and NIM are covered, such as using photonic crystals, phononic crystals, split-ring resonators (SRRs) and continuous media, focusing of waves, gu
<p><P>This book deals with the subject of optical and electronic negative refraction (NR) and negative index materials NIM). Diverse approaches for achieving NR and NIM are covered, such as using photonic crystals, phononic crystals, split-ring resonators (SRRs) and continuous media, focusing of wav