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1 Moradi, Afshin Theory of Electrostatic Waves in Hyperbolic Metamaterials I12920 2023 eBook  
2 Moradi, Afshin Canonical Problems in the Theory of Plasmonics I08808 2020 eBook  
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TitleTheory of Electrostatic Waves in Hyperbolic Metamaterials
Author(s)Moradi, Afshin
PublicationCham, 1. Imprint: Springer 2. Springer Nature Switzerland, 2023.
DescriptionXIII, 229 p. 92 illus., 88 illus. in color : online resource
Abstract NoteThis book covers electrostatic properties of hyperbolic metamaterials (HMMs), a fascinating class of metamaterials which combine dielectric and metal components. Due to the hyperbolic topology of the isofrequency surface in HMMs, the so-called resonance cone direction exists, and as a result, propagation of quasi-electrostatic waves, or more commonly, electrostatic waves close to the resonance cone with large wave vectors, is possible. However, the investigation of electrostatic wave properties in HMMs is largely overlooked in most works on the subject, and the purpose of this monograph is to fill this gap. This book gives a thorough theoretical treatment of propagation, reflection, and refraction of electrostatic waves in HMMs of various dimensions and geometries. It will be of interest to students and researchers who work on electrical and optical properties of metamaterials
ISBN,Price9783031485961
Keyword(s)1. CLASSICAL ELECTRODYNAMICS 2. DIFFERENTIAL EQUATIONS 3. EBOOK - SPRINGER 4. ELECTRODYNAMICS 5. Metamaterials 6. Nanophotonics 7. Nanophotonics and Plasmonics 8. PHOTONIC CRYSTALS 9. Plasmonics
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TitleCanonical Problems in the Theory of Plasmonics : From 3D to 2D Systems
Author(s)Moradi, Afshin
PublicationCham, Springer International Publishing, 2020.
DescriptionXVII, 349 p. 137 illus., 134 illus. in color : online resource
Abstract NoteThis book provides a systemic and self-contained guide to the theoretical description of the fundamental properties of plasmonic waves. The field of plasmonics is built on the interaction of electromagnetic radiation and conduction electrons at metallic interfaces or in metallic nanostructures, and so to describe basic plasmonic behavior, boundary-value problems may be formulated and solved using electromagnetic wave theory based on Maxwell???s equations and the electrostatic approximation. In preparation, the book begins with the basics of electromagnetic and electrostatic theories, along with a review of the local and spatial nonlocal plasma model of an electron gas. This is followed by clear and detailed boundary value analysis of both classical three-dimensional and novel two-dimensional plasmonic systems in a range of different geometries. With only general electromagnetic theory as a prerequisite, this resulting volume will be a useful entry point to plasmonic theory for students, as well as a convenient reference work for researchers who want to see how the underlying models can be analysed rigorously.
ISBN,Price9783030438364
Keyword(s)1. CLASSICAL ELECTRODYNAMICS 2. EBOOK 3. EBOOK - SPRINGER 4. ELECTRODYNAMICS 5. LASERS 6. MICROWAVES 7. Microwaves, RF and Optical Engineering 8. NANOTECHNOLOGY 9. OPTICAL ENGINEERING 10. OPTICS 11. Optics, Lasers, Photonics, Optical Devices 12. PARTIAL DIFFERENTIAL EQUATIONS 13. PHOTONICS 14. PLASMA (IONIZED GASES) 15. PLASMA PHYSICS
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I08808     On Shelf    

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