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eBook Modern Introduction to Surface Plasmons: Theory, Mathematica Modeling, and Applications ePub

by William A. Challener,Dror Sarid

eBook Modern Introduction to Surface Plasmons: Theory, Mathematica Modeling, and Applications ePub
Author: William A. Challener,Dror Sarid
Language: English
ISBN: 0521767172
ISBN13: 978-0521767170
Publisher: Cambridge University Press; 1 edition (June 14, 2010)
Pages: 386
Category: Physics
Subcategory: Science
Rating: 4.3
Votes: 909
Formats: txt azw doc rtf
ePub file: 1585 kb
Fb2 file: 1338 kb

Applications of surface plasmon physics are described, including near-field transducers in heat-assisted magnetic recording and biosensors. Resources at ww. ambridge.

Applications of surface plasmon physics are described, including near-field transducers in heat-assisted magnetic recording and biosensors. org/9780521767170 include Mathematica code to generate figures from the book, color versions of many figures, and extended discussion of topics such as vector diffraction theory. Introducing graduate students in physics, optics, materials science and electrical engineering to surface plasmons, this book also covers guided modes at planar interfaces of metamaterials with negative refractive index.

Modern Introduction to S. .has been added to your Cart. Online resources include Mathematica code to generate figures from the book and extended discussion of select topics.

Techniques for exciting surface plasmons 11. Plasmonic materials 12. Applications Appendixes Index

Techniques for exciting surface plasmons 11. Applications Appendixes Index. oceedings{Sarid2010ModernIT, title {Modern Introduction to Surface Plasmons: Theory, Mathematica Modeling and Applications}, author {Dror Sarid and William A. Challener}, year {2010} }. Dror Sarid, William A. Challener.

Surface plasmons are coherent oscillations of conduction electrons on a metal surface excited by incident light at the metal-dielctric interface.

Dror Sarid, William Challener. Introducing graduate students in physics, optics, materials science and electrical engineering to surface plasmons, this book also covers guided modes at planar interfaces of metamaterials with negative refractive index

Dror Sarid, William Challener. Guided modes at the interfaces between materials with any combination of positive or negative permittivity and permeability are analyzed in a systematic manner.

Cambridge Core - Optics, Optoelectronics and Photonics - Modern Introduction to Surface Plasmons . Theory, Mathematica Modeling, and Applications. Dror Sarid, University of Arizona, William A. Challener, Seagate Technology, California.

Cambridge Core - Optics, Optoelectronics and Photonics - Modern Introduction to Surface Plasmons - by Dror Sarid. Publisher: Cambridge University Press. Online publication date: May 2013. The book is well illustrated, and overall it is prepared to an extremely high standard. K. Alan Shore, Optics and Photonics News. Dror Sarid is Professor and former Director of the Optical Data Storage Center at the College of Optical Sciences, the University of Arizona. He participated in the development of the field of surface plasmons, identifying the long- and short-range surface plasmons and their important applications in science and technology. ambridge

Applications of surface plasmon physics are described, including near-field transducers in heat-assisted magnetic recording and biosensors. org/9780521767170 include Mathematica code to generate figures from the book, color versions of many figures, and extended discussion of topics such as vector diffraction theory"-Provided by publisher.

Introducing graduate students in physics, optics, materials science and electrical engineering to surface plasmons, this book also covers guided modes at planar interfaces of metamaterials with negative refractive index. The physics of localized and propagating surface plasmons, on planar films, gratings, nanowires and nanoparticles, is developed using both analytical and numerical techniques. Guided modes at the interfaces between materials with any combination of positive or negative permittivity and permeability are analyzed in a systematic manner. Applications of surface plasmon physics are described, including near-field transducers in heat-assisted magnetic recording and biosensors. Resources at www.cambridge.org/9780521767170 include Mathematica code to generate figures from the book, color versions of many figures, and extended discussion of topics such as vector diffraction theory.
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