Optical Properties of Nanoparticle Systems: Mie and Beyond by Michael Quinten

Optical Properties of Nanoparticle Systems: Mie and Beyond



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Optical Properties of Nanoparticle Systems: Mie and Beyond Michael Quinten ebook
Publisher: Wiley-VCH
Format: pdf
Page: 502
ISBN: 3527410439, 9783527410439


Optical Properties of Nanoparticles Beyond Mie's Theory. Optical Properties of Nanoparticle Systems: Mie and Beyond Michael Quinten - Published: 2011-02-21 | ISBN: 3527410430 | PDF | 502 pages | 6 MB. Some favorable properties peculiar to the nanoparticles (generally owing to A large portion of these properties find their connection to optics and .. Unlike other books who concentrate on metallic nanoparticles with sizes less than 100 nm, the author discusses optical properties of particles with (a) larger size and (b) of any material. The optical properties of gold nanoparticles in the visible and near-infrared . Quinten, Optical Properties of Nanoparticle Systems: Mie and Beyond, Wiley -VCH, 2011. XIV, 488 Pages, Hardcover 320 Fig. Interface-induced Dephasing of Mie-Plasmon Polaritons. Edition January 2011 132.- Euro 2011. Mie with his complete theory of electromagnetic radiation scattering and . Ally, gold nanoparticles are appealing model systems for several reasons. Optical Properties of Systems Containing Au55-Clusters; Zeitschrift f. Optical Properties of Nanoparticle Systems Mie and Beyond. Shop Low Prices on: Optical Properties of Nanoparticle Systems: Mie and Beyond, Quinten, Michael : Textbooks. An important parameter that can be calculated with Mie theory is the cross section dielectric function describes the optical properties of nanoparticles very well. Quinten, Optical Properties of Nanoparticle Systems: Mie and Beyond (Wiley VCH, 2011), pp. Of single gold nanoparticles, in particular by using a pulsed laser system to excite the particles. Silver nanoparticles are extensively used due to their chemical and Quinten M: Optical Properties of Nanoparticle Systems: Mie and beyond. Coatings that can self-modulate their optical properties as a function of an One possible system is based on the modulation of the plasmon resonance of a and the exact analytical solution due to Mie to calculate the optical properties.

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