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By Pierre‐Noël Favennec(eds.)

Because the suggestion used to be first proposed on the finish of the 20 th Century, metamaterials were the topic of a lot study and dialogue through the wave neighborhood. greater than 10 years later, the variety of similar released articles is expanding considerably. On
the one hand, this luck could be attributed to goals of latest actual items that are the implications of the singular homes of metamaterials. between them, we will be able to think of the examples of ideal lensing and invisibility cloaking. On different hand,
metamaterials additionally offer new instruments for the layout of famous wave features reminiscent of antennas for electromagnetic waves.
The aim of this publication is to suggest an summary of the idea that of metamaterials as a viewpoint on a brand new useful software for wave study
and engineering. This contains either the electromagnetic spectrum, from
microwave to optics, and the sector of acoustic waves.

Contents

1. evaluation of Microwave and Optical Metamaterial applied sciences, Didier Lippens.
2. MetaLines: Transmission Line method for the layout of Metamaterial units, Bruno Sauviac.
3. Metamaterials for Non-Radiative Microwave services and Antennas, Divitha Seetharamdoo and Bruno Sauviac.
4. towards New clients for Electromagnetic Compatibility, Divitha Seetharamdoo.
5. Dissipative Loss in Resonant Metamaterials, Philippe Tassin, Thomas Koschny, and Costas M. Soukoulis.
6. Transformation Optics and Antennas, André de Lustrac, Shah Nawaz Burokur and Paul-Henri Tichit.
7. Metamaterials for keep an eye on of floor Electromagnetic and Liquid Waves, Sébastien Guenneau, Mohamed Farhat, Muamer Kadic, Stefan Enoch and Romain Quidant.
8. Classical Analog of Electromagnetically caused Transparency, Philippe Tassin, Thomas Koschny and Costas M. Soukoulis.

Content:
Chapter 1 review of Microwave and Optical Metamaterial applied sciences (pages 1–42):
Chapter 2 MetaLines: Transmission Line technique for the layout of Metamaterial units (pages 43–66):
Chapter three Metamaterials for Non‐Radiative Microwave features and Antennas (pages 67–86):
Chapter four towards New customers for Electromagnetic Compatibility (pages 87–109):
Chapter five Dissipative Loss in Resonant Metamaterials (pages 111–132):
Chapter 6 Transformation Optics and Antennas (pages 133–160):
Chapter 7 Metamaterials for keep watch over of floor Electromagnetic and Liquid Waves (pages 161–194):
Chapter eight Classical Analog of Electromagnetically brought about Transparency (pages 195–214):

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