Description: Optical Properties of Metallic Nanoparticles : Basic Principles and Simulation, Hardcover by Trugler, Andreas, ISBN 3319250728, ISBN-13 9783319250724, Brand New, Free shipping in the US
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus on simulations and the theoretical aspects of optics and nanotechnology. A research field with numerous applications, plasmonics bridges the gap between the micrometer length scale of light and the secrets of the nanoworld. This is achieved by binding light to charge density oscillations of metallic nanostructures, so-called surface plasmons, which allow electromagnetic radiation to be focussed down to spots as small as a few nanometers. Th is a snapshot of recent and ongoing research and at the same time outlines our present understanding of the optical properties of metallic nanoparticles, ranging from the tunability of plasmonic resonances to the ultrafast dynamics of light-matter interaction. Beginning with a gentle introduction that highlights the basics of plasmonic interactions and plasmon imaging, the author then presents a suitable theoretical framework for the description of metallic nanostructures. This model based on this framework is first solved analytically for simple systems, and subsequently through numerical simulations for more general cases where, for example, surface roughness, nonlinear and nonlocal effects or metamaterials are investigated.
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Book Title: Optical Properties of Metallic Nanoparticles : Basic Principles a
Number of Pages: Xix, 217 Pages
Language: English
Publication Name: Optical Properties of Metallic Nanoparticles : Basic Principles and Simulation
Publisher: Springer International Publishing A&G
Subject: Lasers & Photonics, Physics / Optics & Light, Materials Science / Metals & Alloys, Nanotechnology & Mems
Publication Year: 2016
Type: Textbook
Item Weight: 171.2 Oz
Author: Andreas Trügler
Item Length: 9.3 in
Subject Area: Technology & Engineering, Science
Item Width: 6.1 in
Series: Springer Series in Materials Science Ser.
Format: Hardcover