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Dielectric Metamaterials and Metasurfaces in Transformation Optics and Photonics: Woodhead Publishing Series in Electronic and Optical Materials

Autor Elena Semouchkina
en Limba Engleză Paperback – 11 aug 2021
Dielectric Metamaterials and Metasurfaces in Transformation Optics and Photonics addresses the complexity of electromagnetic responses from arrays of dielectric resonators, which are often omitted from consideration when using simplified metamaterials concepts. The book's authors present a thorough consideration of dielectric resonances in different environments which is needed to design optical and photonic devices. Dielectric metamaterials and photonic crystals are compared, with their effects analyzed. Design approaches and examples of designs for invisibility cloaks based on artificial media are also included.  Current challenge of incorporating artificial materials into transformation optics-based and photonics devices are also covered.

  • Presents advanced concepts of utilizing artificial materials for optical and photonic device applications
  • Includes design approaches of materials for transformation optics, cloaking, applications and examples of these designs
  • Compares photonic crystals and metamaterials, their effects, properties and characteristics
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Specificații

ISBN-13: 9780128205969
ISBN-10: 0128205962
Pagini: 328
Ilustrații: 150 illustrations (75 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.44 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials


Cuprins

1. Periodic arrays of dielectric resonators as metamaterials and photonic crystals 2. Specifics of wave propagation through chains of coupled dielectric resonators and bulk dielectric metamaterials 3. The basics of transformation optics. Realizing invisibility cloaking by using resonances in conventional and dielectric metamaterials 4. Properties of dielectric metamaterials defined by their analogy with strongly-modulated photonic crystals 5. Engineering transformation media of invisibility cloaks by using crystal-type properties of dielectric metamaterials 6. Light scattering from single dielectric particles and dielectric metasurfaces at Mie-type dipolar resonances 7. Surface lattice resonances in metasurfaces composed of silicon resonators 8. Electromagnetically induced transparency (EIT) in metasurfaces composed from silicon or ceramic cylindrical resonators