Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites

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Last edited by MARC Bot
July 7, 2019 | History

Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites

Glasses containing metallic nanoparticles exhibit very promising linear and nonlinear optical properties, mainly due to the surface plasmon resonances (SPRs) of the nanoparticles. The spectral position in the visible and near-infrared range and polarization dependence of the SPR are characteristically determined by the nanoparticles’ shapes. The focus of Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites is the interaction of intense ultra-short laser pulses with glass containing silver nanoparticles embedded in soda-lime glass, and nanostructural modifications in metal-glass nanocomposites induced by such laser pulses. In order to provide a comprehensive physical picture of the processes leading to laser-induced persistent shape transformation of the nanoparticles, series of experimental results investigating the dependences of laser assisted shape modifications of nanoparticles with laser pulse intensity, excitation wavelength, temperature are considered. In addition, the resulting local optical dichroism allows producing very flexibly polarizing optical (sub-) microstructures with well-specified optical properties. The achieved considerable progress towards technological application of this technique, in particular also for long-term optical data storage, is also discussed.

Publish Date
Language
English
Pages
70

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Edition Availability
Cover of: Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites
Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites
2013, Springer International Publishing AG
in English
Cover of: Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites
Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites
2013, Springer International Publishing, Imprint: Springer
electronic resource / in English

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Book Details


Table of Contents

Introduction
Optical Properties of Nanocomposites Containing Metal Nanoparticles
Interaction of Ultra-Short Laser Pulses with Metal Nanoparticles Incorporated in Dielectric Media
Effect of Pulse Intensity and Writing Density on Nanoparticle Shape
"Off-Resonant" Excitation: Irradiation Wavelength Dependence
The Effect of Temperature on the Laser-Induced Modifications of Ag Nanoparticles
Ultra-Short Pulsed Laser Engineering of Metal-Glass Nanocomposites
Conclusions.

Edition Notes

Published in
Heidelberg
Series
SpringerBriefs in Physics

Classifications

Dewey Decimal Class
621.36
Library of Congress
QC350-467, TA1501-1820, QC392-449.5, TA1750-1750.22, QC1-75

The Physical Object

Format
[electronic resource] /
Pagination
XII, 70 p. 38 illus., 36 illus. in color.
Number of pages
70

Edition Identifiers

Open Library
OL27093250M
ISBN 13
9783319004372

Work Identifiers

Work ID
OL19908376W

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