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Optical Properties of Nanoparticle Systems : Mie and beyond / Michael Quinten

By: Quinten, Michael, autor
Material type: materialTypeLabelE-bookPublisher: Weinheim, Germany : Wiley-VCH, 2011Copyright date: ©2011Description: 1 recurso en línea (504 páginas).ISBN: 9783527410439 ; 9783527633135.Subject: Materiales nanoestructurados | NanofotónicaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Contents: 1. Introduction. 2. Nanoparticle Systems and Experimental Optical Observables. 3. Interaction of Light with Matter: The Optical Material Function. 4. Fundamentals of Light Scattering by an Obstacle. 5. Mie's Theory for Single Spherical Particles. 6. Application of Mie's Theory. 7. Extensions of Mie's Theory. 8. Limitations of Mie's Theory: Size and Quantum Size Effects in Very Small Nanoparticles. 9. Beyond Mie's Theory I: Nonspherical Particles. 10. Beyond Mie's Theory II: The Generalized Mie Theory. 11. The Generalized Mie Theory applied to Different Systems. 12. Densely Packed Systems. 13. Nearfield and SERS. 14. Effective Medium Theories.
Summary: Filling the gap for a description of the optical properties of small particles with sizes less than 1000 nm and to provide a comprehensive overview on the spectral behavior of nanoparticulate matter, this is the most up-to-date reference on the optical physics of nanoparticle systems. The author, an expert in the field with both academic and industrial experience, concentrates on the linear optical properties, elastic light scattering and absorption of single nanoparticles and on reflectance and transmittance of nanoparticle matter
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TA418.9 .N35 2011 EB (Browse shelf(Opens below)) Acceso electrónico ebook.395955
Total holds: 0

Incluye referencias bibliográficas: (páginas. 441-477) e índice

Contents: 1. Introduction. 2. Nanoparticle Systems and Experimental Optical Observables. 3. Interaction of Light with Matter: The Optical Material Function. 4. Fundamentals of Light Scattering by an Obstacle. 5. Mie's Theory for Single Spherical Particles. 6. Application of Mie's Theory. 7. Extensions of Mie's Theory. 8. Limitations of Mie's Theory: Size and Quantum Size Effects in Very Small Nanoparticles. 9. Beyond Mie's Theory I: Nonspherical Particles. 10. Beyond Mie's Theory II: The Generalized Mie Theory.
11. The Generalized Mie Theory applied to Different Systems. 12. Densely Packed Systems. 13. Nearfield and SERS. 14. Effective Medium Theories.

Filling the gap for a description of the optical properties of small particles with sizes less than 1000 nm and to provide a comprehensive overview on the spectral behavior of nanoparticulate matter, this is the most up-to-date reference on the optical physics of nanoparticle systems. The author, an expert in the field with both academic and industrial experience, concentrates on the linear optical properties, elastic light scattering and absorption of single nanoparticles and on reflectance and transmittance of nanoparticle matter

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