Metamaterials for Perfect Absorption Metamaterials for Perfect Absorption
Springer Series in Materials Science

Metamaterials for Perfect Absorption

Young Pak Lee and Others
    • 109,99 €
    • 109,99 €

Publisher Description

This book provides a comprehensive overview of the theory and practical development of metamaterial-based perfect absorbers (MMPAs). It begins with a brief history of MMPAs which reviews the various theoretical and experimental milestones in their development. The theoretical background and fundamental working principles of MMPAs are then discussed, providing the necessary background on how MMPAs work and are constructed. There then follows a section describing how different MMPAs are designed and built according to the operating frequency of the electromagnetic wave, and how their behavior is changed. Methods of fabricating and characterizing MMPAs are then presented.

The book elaborates on the performance and characteristics of MMPAs, including electromagnetically-induced transparency (EIT). It also covers recent advances in MMPAs and their applications, including multi-band, broadband, tunability, polarization independence and incidence independence. 

Suitable for graduate students in optical sciences and electronic engineering, it will also serve as a valuable reference for active researchers in these fields.

GENRE
Science & Nature
RELEASED
2016
2 January
LANGUAGE
EN
English
LENGTH
184
Pages
PUBLISHER
Springer Nature Singapore
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
8.8
MB
Stress-Induced Local Phase Transformations Near Cracks and Dislocations Stress-Induced Local Phase Transformations Near Cracks and Dislocations
2026
Laser and Hybrid Technologies for Surface Engineering and Welding Laser and Hybrid Technologies for Surface Engineering and Welding
2026
Kinetics of Hydrogen in Metals Kinetics of Hydrogen in Metals
2026
Polymer Blend Nanocomposites Polymer Blend Nanocomposites
2025
Sustainable Materials for the Built Environment Sustainable Materials for the Built Environment
2025
Metal Science in Modern Manufacturing Technologies Metal Science in Modern Manufacturing Technologies
2025