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Surface Plasmon Nanophotonics, Brongersma Mark L., Kik Pieter G.

Surface Plasmon Nanophotonics

Автор: Brongersma Mark L., Kik Pieter G.
Название:  Surface Plasmon Nanophotonics   (Поверхность плазмона)
Издательство: Springer
Классификация:
Электричество, магнетизм и электромагнетизм
Нанотехнология
Электронная техника

ISBN: 140204349X
ISBN-13(EAN): 9781402043499
ISBN: 1-402-04349-X
ISBN-13(EAN): 978-1-402-04349-9
Обложка/Формат: Hardback
Страницы: 278
Вес: 0.622 кг.
Дата издания: 01.10.2006
Серия: Springer Series in Optical Sciences
Язык: ENG
Иллюстрации: 147 illus.
Размер: 23.65 x 16.21 x 1.65 cm
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
Рейтинг:
Поставляется из: Германии
Описание: The development of advanced dielectric photonic structures has enabled tremendous control over the propagation and manipulation of light. Structures such as waveguides, splitters, mixers, and resonators now play a central role in the telecommunications industry. This book will discuss an exciting new class of photonic devices, known as surface plasmon nanophotonic structures. Surface plasmons are easily accessible excitations in metals and semiconductors and involve a collective motion of the conduction electrons. These excitations can be exploited to manipulate electromagnetic waves at optical frequencies (light) in new ways that are unthinkable in conventional dielectric structures. The field of plasmon nanophotonics is rapidly developing and impacting a wide range of areas including: electronics, photonics, chemistry, biology, and medicine. The book will highlight several exciting new discoveries that have been made, while providing a clear discussion of the underlying physics, the nanofabrication issues, and the materials considerations involved in designing plasmonic devices with new functionality.The book is aimed at researchers and students interested in entering the field of plasmon nanophotonics, while serving as a reference to scientists already active in this area of research. It is written at the level of a first year graduate student with some background in electromagnetic theory and working knowledge of Maxwell’s equations.
Описание: Discusses a class of photonic devices, known as surface plasmon nanophotonic structures. This book highlights several discoveries, while providing a discussion of the underlying physics, the nanofabrication issues, and the materials considerations involved in designing plasmonic devices with new functionality.
Дополнительное описание: Формат: 235x155
Круг читателей: Researchers in industry and academia in the area of Micro- and Nanophotonics, Photonic Crystals, Plasmonics, Integrated Optics, Optical Biosensors, Optical Data Storage
Ключевые слова: plasmonics
photonics
nanotechnology
near-field optics
biosensors
Язык: eng
Оглавление: 1: Surface Plasmon Nanophotonics 2: Near-field and Far-field Properties of Nanoparticle Arrays 3: Theory of Light Transmission through Periodically Structured Nano-apertures 4: Development and Near Field Characterization of Surface Plasmon Waveguides 5: Numerical Simulations of Long-Range Plasmonic Transmission Lines 6: Surface Plasmon Polariton Guiding in Pohotonic Bandgap Structures 7: Subwavelength-scale Plasmon Waveguides 8: Optical Superlens 9: Optical Field Enhancement with Plasmon Resonant Bowtie Nanoantennas 10: Near-field Optical Excitation and Detection of Surface Plasmons 11: Principles of Near Field Optical Mapping. 12: Overview of Simulation Techniques for Plasmonic Devices  13: Plasmon Hybridization in Complex Nanostructures 14: Sensing Proteins with Adaptive Metal Nanostructures 15: Integrated Optics Based on Long-range Surface Plasmon Polaritons 16: Localized Surface Plasmons for Optical Data Storage beyond the Diffraction Limit



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Описание: The book emphasizes the role of surface effects in optical phenomena in nanoscience from two different perspectives. When systems are reduced in volume, the surface versus volume ratio increases: this translates, at the level of single nanostructures, into enhanced role of interfacial chemistry and thermodynamics, and, at the level of systems of nanostructures, into larger density on interfaces, which in turn leads to intriguing collective effects, such as plasmonics or multiple reflection and refraction phenomena. The book aims to highlight both perspectives presenting sample applications, with no claim of being exhaustive, but rather attempting to stimulate the reader in this potentially rewarding field.
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ISBN: 3527408584 ISBN-13(EAN): 9783527408580
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Описание: This book is based on a pss special issue to be published in November 2007. Since it is the closing report of a DFG (German Research Foundation) priority programme, the DFG pays a subsidy towards printing costs for the book. The book will therefore be printed in full colour. This is a subsequent volume (but NOT a second edition!) to Busch, L?lkes, Wehrspohn, Photonic Crystals, 3-527-60259-3, publ. 2006; sales to date: 712 copies.
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Наличие на складе: Поставка под заказ.
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Наличие на складе: Нет в наличии.
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Описание: Nanophotonics is a comprehensive introduction to the emerging area concerned with controlling and shaping optical fields at a subwavelength scale. Photonic crystals and microcavities are extensively described, including non-linear optical effects. Local-probe techniques are presented and are used to characterize plasmonic devices. The emerging fields of semiconductor nanocrystals and nanobiophotonics are also presented.
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Описание: Nanophotonics is where photonics merges with nanoscience and nanotechnology, and where spatial confinement considerably modifies light propagation and light-matter interaction. Describing the basic phenomena, principles, experimental advances and potential impact of nanophotonics, this graduate-level textbook is ideal for students in physics, optical and electronic engineering and materials science. The textbook highlights practical issues, material properties and device feasibility, and includes the basic optical properties of metals, semiconductors and dielectrics. Mathematics is kept to a minimum and theoretical issues are reduced to a conceptual level. Each chapter ends in problems so readers can monitor their understanding of the material presented. The introductory quantum theory of solids and size effects in semiconductors are considered to give a parallel discussion of wave optics and wave mechanics of nanostructures. The physical and historical interplay of wave optics and quantum mechanics is traced. Nanoplasmonics, an essential part of modern photonics, is also included.
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ISBN: 3642174094 ISBN-13(EAN): 9783642174094
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Цена: 11549 р.
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Описание: Quantum Theory of Near-field Electrodynamics gives a self-contained account of the fundamental theory of field-matter interaction on a subwavelength scale. The quantum physical behavior of matter (atoms and mesoscopic media) in both classical and quantum fields is treated. The role of local-field effects and nonlocal electrodynamics, and the tight links to the theory of spatial photon localization are emphasized. The book may serve as a reference work in the field, and is of general interest for physicists working in quantum optics, mesoscopic electrodynamics and physical optics. The macroscopic and microscopic classical theories form a good starting point for the quantum approach, and these theories are presented in a manner appropriate for graduate students entering near-field optics.
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Описание: This book focuses on the recent progress in nanophotonics technology to be used to develop novel nano-optical devices, fabrication technology, and security systems. It begins with a review of the concept of dressed photons and applications to devices, fabrication, and systems; principles and applications. Further topics include: DNA process for quantum dot chain, photon enhanced emission microscopy, near field spectroscopy of metallic nanostructure, self-organized fabrication of composite semiconductor quantum dots, formation of metallic nanostructure, and nanophotonic information systems with security. These topics are reviewed by seven leading scientists. This overview is a variable resource for engineers and scientists working in the field of nanophotonics.
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