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Everything You Always Wanted to Know about Nanophotonics and Metamaterials
  • Language: en
  • Pages: 230

Everything You Always Wanted to Know about Nanophotonics and Metamaterials

  • Type: Book
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  • Published: 2013-12-06
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  • Publisher: VCH

This book is giving insight to a fascinating area of research. Nanophotonics does not only play an eminent role in the development of present and future devices for communication, lighting, or energy harvesting. Researchers do also reclaim requisites from science fiction back to science by creating new structures like metamaterials to form an invisible cloak. The reader will find a trustworthy first–hand source of information on Photonics and Metamaterials. On an accessible level, it compiles, in a glossary style, about 200 entries on different topics of up to date research. Each entry is presented on a full page and consists of an explanatory image and a short, simple to read account. Eve...

Quantum Photonics: Pioneering Advances and Emerging Applications
  • Language: en
  • Pages: 646

Quantum Photonics: Pioneering Advances and Emerging Applications

  • Type: Book
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  • Published: 2019-02-19
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  • Publisher: Springer

This book brings together reviews by internationally renowed experts on quantum optics and photonics. It describes novel experiments at the limit of single photons, and presents advances in this emerging research area. It also includes reprints and historical descriptions of some of the first pioneering experiments at a single-photon level and nonlinear optics, performed before the inception of lasers and modern light detectors, often with the human eye serving as a single-photon detector. The book comprises 19 chapters, 10 of which describe modern quantum photonics results, including single-photon sources, direct measurement of the photon's spatial wave function, nonlinear interactions and non-classical light, nanophotonics for room-temperature single-photon sources, time-multiplexed methods for optical quantum information processing, the role of photon statistics in visual perception, light-by-light coherent control using metamaterials, nonlinear nanoplasmonics, nonlinear polarization optics, and ultrafast nonlinear optics in the mid-infrared.

Singular and Chiral Nanoplasmonics
  • Language: en
  • Pages: 538

Singular and Chiral Nanoplasmonics

  • Type: Book
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  • Published: 2014-10-27
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  • Publisher: CRC Press

Plasmonics has already revolutionized molecular imaging, cancer research, optical communications, sensing, spectroscopy, and metamaterials development. This book is a collective effort by several research groups to push the frontiers of plasmonics research into the emerging area of harnessing and generation of photon angular momentum on micro- and nanoscales. It offers a glimpse into the ongoing research efforts to develop new types of plasmonic vortex–pinning platforms and chiral nanostructures for light harvesting, bio(chemical) sensing, drug discovery, and nanoscale energy transfer.

Metamaterial Electromagnetic Wave Absorbers
  • Language: en
  • Pages: 191

Metamaterial Electromagnetic Wave Absorbers

Electromagnetic metamaterials are a family of shaped periodic materials which achieve extraordinary scattering properties that are difficult or impossible to achieve with naturally occurring materials. This book focuses on one such feature of electromagnetic metamaterials—the theory, properties, and applications of the absorption of electromagnetic radiation. We have written this book for undergraduate and graduate students, researchers, and practitioners, covering the background and tools necessary to engage in the research and practice of metamaterial electromagnetic wave absorbers in various fundamental and applied settings. Given the growing impact of climate change, the call for innov...

Structured Surfaces as Optical Metamaterials
  • Language: en
  • Pages: 459

Structured Surfaces as Optical Metamaterials

Optical metamaterials are an exciting new field in optical science. A rapidly developing class of these metamaterials are those that allow the manipulation of volume and surface electromagnetic waves in desirable ways by suitably structuring the surfaces they interact with. They have applications in a variety of fields, such as materials science, photovoltaic technology, imaging and lensing, beam shaping and lasing. Describing techniques and applications, this book is ideal for researchers and professionals working in metamaterials and plasmonics, as well as those just entering this exciting new field. It surveys different types of structured surfaces, their design and fabrication, their unusual optical properties, recent experimental observations and their applications. Each chapter is written by an expert in that area, giving the reader an up-to-date overview of the subject. Both the experimental and theoretical aspects of each topic are presented.

Computational Methods for Nanoscale Applications
  • Language: en
  • Pages: 725

Computational Methods for Nanoscale Applications

Positioning itself at the common boundaries of several disciplines, this work provides new perspectives on modern nanoscale problems where fundamental science meets technology and computer modeling. In addition to well-known computational techniques such as finite-difference schemes and Ewald summation, the book presents a new finite-difference calculus of Flexible Local Approximation Methods (FLAME) that qualitatively improves the numerical accuracy in a variety of problems.

Nanophotonics with Surface Plasmons
  • Language: en
  • Pages: 341

Nanophotonics with Surface Plasmons

  • Type: Book
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  • Published: 2006-12-18
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  • Publisher: Elsevier

Current developments in optical technologies are being directed toward nanoscale devices with subwavelength dimensions, in which photons are manipulated on the nanoscale. Although light is clearly the fastest means to send information to and from the nanoscale, there is a fundamental incompatibility between light at the microscale and devices and processes at the nanoscale. Nanostructured metals which support surface plasmon modes can concentrate electromagnetic (EM) fields to a small fraction of a wavelength while enhancing local field strengths by several orders of magnitude. For this reason, plasmonic nanostructures can serve as optical couplers across the nano–micro interface: metal–...

Coherent Optical Interactions in Semiconductors
  • Language: en
  • Pages: 362

Coherent Optical Interactions in Semiconductors

The NATO Advanced Research Workshop on Coherent Optical Processes in Semiconductors was held in Cambridge, England on August 11-14,1993. The idea of holding this Workshop grew from the recent upsurge in activity on coherent transient effects in semiconductors. The development of this field reflects advances in both light sources and the quality of semiconductor structures, such that tunable optical pulses are now routinely available whose duration is shorter than the dephasing time for excitonic states in quantum wells. It was therefore no surprise to the organisers that as the programme developed, there emerged a heavy emphasis on time-resolved four-wave mixing, particularly in quantum well...

Next Generation Multiple Access
  • Language: en
  • Pages: 628

Next Generation Multiple Access

Highly comprehensive resource investigating how next-generation multiple access (NGMA) relates to unrestricted global connection, business requirements, and sustainable wireless networks Next Generation Multiple Access is a comprehensive, state-of-the-art, and approachable guide to the fundamentals and applications of next-generation multiple access (NGMA) schemes, guiding the future development of industries, government requirements, and military utilization of multiple access systems for wireless communication systems and providing various application scenarios to fit practical case studies. The scope and depth of this book are balanced for both beginners to advanced users. Additional refe...

Discrete and Continuum Models for Complex Metamaterials
  • Language: en
  • Pages: 409

Discrete and Continuum Models for Complex Metamaterials

Explores the relationship between discrete and continuum mechanics as a tool to model new and complex metamaterials. Including a comprehensive bibliography and historical review of the field, and a pedagogical mathematical treatment, it is ideal for graduate students and researchers in mechanical and civil engineering, and materials science.