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Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Applied optics > Laser technology

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Progress in Nonlinear Nano-Optics (Hardcover, 2015 ed.) Loot Price: R4,066
Discovery Miles 40 660
Progress in Nonlinear Nano-Optics (Hardcover, 2015 ed.): Shuji Sakabe, Christoph Lienau, Rudiger Grunwald

Progress in Nonlinear Nano-Optics (Hardcover, 2015 ed.)

Shuji Sakabe, Christoph Lienau, Rudiger Grunwald

Series: Nano-Optics and Nanophotonics

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Loot Price R4,066 Discovery Miles 40 660 | Repayment Terms: R381 pm x 12*

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This book presents the state of the art in nonlinear nanostructures for ultrafast laser applications. Most recent results in two emerging fields are presented: (i) generation of laser-induced nanostructures in materials like metals, metal oxides and semiconductors, and (ii) ultrafast excitation and energy transfer in nanoscale physical, chemical and hybrid systems. Particular emphasis is laid on the up-to-date controversially discussed mechanisms of sub-wavelength ripple formation including models of self-organized material transport and multiphoton excitation channels, nonlinear optics of plasmonic structures (nanotips, nanowires, 3D-metamaterials), and energy localization and transport on ultrafast time scale and spatial nanoscale. High-resolution spectroscopy, simulation and characterization techniques are reported. New applications of ultrashort-pulsed lasers for materials processing and the use of nanostructured materials for characterizing laser fields and laser-matter-interactions are discussed.

General

Imprint: Springer International Publishing AG
Country of origin: Switzerland
Series: Nano-Optics and Nanophotonics
Release date: 2015
First published: 2015
Editors: Shuji Sakabe • Christoph Lienau • Rudiger Grunwald
Dimensions: 235 x 155 x 19mm (L x W x T)
Format: Hardcover
Pages: 273
Edition: 2015 ed.
ISBN-13: 978-3-319-12216-8
Categories: Books > Professional & Technical > Technology: general issues > Nanotechnology
Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Applied optics > Laser technology
LSN: 3-319-12216-9
Barcode: 9783319122168

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