Ellipsometry at the nanoscale /

This book presents and introduces ellipsometry in nanoscience and nanotechnology making a bridge between the classical and nanoscale optical behaviour of materials. It delineates the role of the non-destructive and non-invasive optical diagnostics of ellipsometry in improving science and technology...

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Bibliographic Details
Corporate Authors: SpringerLink (Online service)
Group Author: Losurdo, Maria.; Hingerl, Kurt.
Published: Springer,
Publisher Address: Berlin ; New York :
Publication Dates: 2013.
Literature type: eBook
Language: English
Subjects:
Online Access: http://dx.doi.org/10.1007/978-3-642-33956-1
Summary: This book presents and introduces ellipsometry in nanoscience and nanotechnology making a bridge between the classical and nanoscale optical behaviour of materials. It delineates the role of the non-destructive and non-invasive optical diagnostics of ellipsometry in improving science and technology of nanomaterials and related processes by illustrating its exploitation, ranging from fundamental studies of the physics and chemistry of nanostructures to the ultimate goal of turnkey manufacturing control. This book is written for a broad readership: materials scientists, researchers, engineers, as well as students and nanotechnology operators who want to deepen their knowledge about both basics and applications of ellipsometry to nanoscale phenomena. It starts as a general introduction for people curious to enter the fields of ellipsometry and polarimetry applied to nanomaterials and progresses to articles by experts on specific fields that span from plasmonics, optics, to semiconductors and flexible electronics. The core belief reflected in this book is that ellipsometry applied at the nanoscale offers new ways of addressing many current needs. The book also explores forward-looking potential applications.
Carrier Form: 1 online resource
Bibliography: Includes bibliographical references.
ISBN: 9783642339561 (electronic bk.)
3642339565 (electronic bk.)
Index Number: QC443
CLC: O436.3
Contents: A Brief History and State of the Art of Ellipsometry /
Advanced Mueller Ellipsometry Instrumentation and Data Analysis /
Data Analysis for Nanomaterials: Effective Medium Approximation, Its Limits and Implementations /
Relationship Between Surface Morphology and Effective Medium Roughness /
Plasmonics and Effective-Medium Theory /
Thin Films of Nanostructured Noble Metals /
Spectroscopic Ellipsometry on Metallic Gratings /
Ellipsometry at the Nanostructure /
Spectroscopic Ellipsometry and Magneto-Optical Kerr Spectroscopy of Magnetic Garnet Thin Films Incorporating Plasmonic Nanoparticles /
Generalized Ellipsometry Characterization of Sculptured Thin Films Made by Glancing Angle Deposition /
THz Generalized Ellipsometry Characterization of Highly-Ordered Three-Dimensional Nanostructures /
Infrared Ellipsometric Investigations of Free Carriers and Lattice Vibrations in Superconducting Cuprates /
Real-Time Ellipsometry for Probing Charge-Transfer Processes at the Nanoscale /
Polarimetric and Other Optical Probes for the Solid-Liquid Interface /
Spectroscopic Ellipsometry for Functional Nano-Layers of Flexible Organic Electronic Devices /
Spectroscopic Ellipsometry of Nanoscale Materials for Semiconductor Device Applications /
Ellipsometry of Semiconductor Nanocrystals /
Spectroscopic El