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    Photonics, Volume 2

    Nanophotonic Structures and Materials

    AvDavid L. Andrews

    Inbunden, Engelska, 2015

    Del i serien Wiley-Science Wise Co-Publication

    1 700 kr

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    Beskrivning

    Discusses the basic physical principles underlying the science and technology of nanophotonics, its materials and structuresThis volume presents nanophotonic structures and Materials. Nanophotonics is photonic science and technology that utilizes light/matter interactions on the nanoscale where researchers are discovering new phenomena and developing techniques that go well beyond what is possible with conventional photonics and electronics.The topics discussed in this volume are: Cavity Photonics; Cold Atoms and Bose-Einstein Condensates; Displays; E-paper; Graphene; Integrated Photonics; Liquid Crystals; Metamaterials; Micro-and Nanostructure Fabrication; Nanomaterials; Nanotubes; Plasmonics; Quantum Dots; Spintronics; Thin Film Optics Comprehensive and accessible coverage of the whole of modern photonics Emphasizes processes and applications that specifically exploit photon attributes of light Deals with the rapidly advancing area of modern optics Chapters are written by top scientists in their field Written for the graduate level student in physical sciences; Industrial and academic researchers in photonics, graduate students in the area; College lecturers, educators, policymakers, consultants, Scientific and technical libraries, government laboratories, NIH.

    Produktinformation

    • Utgivningsdatum:2015-04-03
    • Mått:161 x 243 x 29 mm
    • Vikt:744 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Wiley-Science Wise Co-Publication
    • Antal sidor:456
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781118225516

    Utforska kategorier

    • Övrig teknik och tillämpad vetenskap inom Naturvetenskap och teknik

    Mer om författaren

    David L. Andrews leads research on fundamental molecular photonics and energy transport, optomechanical forces, and nonlinear optical phenomena. He has over 300 research papers and a dozen of books to his name—including the widely adopted textbook, Lasers in Chemistry. The current focus of his research group is on optical vortices, novel mechanisms for optical nanomanipulation and switching, and light harvesting in nanostructured molecular systems. The group enjoys strong international links, particularly with groups in Canada, Lithuania, New Zealand, and the United States. Andrews is a Fellow of the Royal Society of Chemistry, a Fellow of the Institute of Physics, and a Fellow of SPIE, the international society for optics and photonics.

    Innehållsförteckning

    • List of Contributors ixPreface xi1 Silicon Photonics 1Wim Bogaerts1.1 Introduction 11.2 Applications 11.3 Optical Functions 31.4 Silicon Photonics Technology 101.5 Conclusion 15References 152 Cavity Photonics 21J.Mørk P. T. Kristensen P. Kaer M. Heuck Y. Yu and N. Gregersen2.1 Introduction 212.2 Cavity Fundamentals 222.3 Cavity-Based Switches 262.4 Emitters in Cavities 322.5 Nanocavity Lasers and LEDs 422.6 Summary 46Acknowledgments 47References 473 Metamaterials: State-of-the Art and Future Directions 53Natalia M. Litchinitser and Vladimir M. Shalaev3.1 Introduction 533.2 Negative-Index Materials 543.3 Magnetic Metamaterials 593.4 Graded-Index Transition Metamaterials 623.5 Transformation Optics 703.6 Metasurfaces 75References 784 Quantum Nanoplasmonics 85Mark I. Stockman4.1 Introduction 854.2 Spaser and Nanoplasmonics with Gain 864.3 Adiabatic Hot-Electron Nanoscopy 118Acknowledgments 125References 1255 Dielectric Photonic Crystals 133Robert H. Lipson5.1 Introduction 1335.2 Fundamentals 1345.3 Fabrication Methods and Materials 1455.4 Applications 1545.5 Conclusions 159References 1596 Quantum Dots 169Stanley Tsao and Manijeh Razeghi6.1 Introduction 1696.2 Quantum Dots for Infrared Detection 1756.3 Quantum Dot Growth 1796.4 Device Fabrication and Measurement Procedures 1846.5 Gallium Arsenide–Based Quantum Dot Detectors 1866.6 Indium Phosphide-Based Quantum Dot Detectors 1986.7 Colloidal Quantum Dots 2156.8 Conclusion 216References 2177 Magnetic Control of Spin in Molecular Photonics 221Eitan Ehrenfreund and Z. Valy Vardeny7.1 Introduction 2217.2 A Survey of the Magneto-Electroluminescence in OLEDs 2227.3 Organic MEL at Small Magnetic Fields; Compass Effect 2327.4 Magnetic Field Effect on Excited State Spectroscopies in Organic Semiconductor Films 2367.5 Basic Quantum Mechanical Models Based on Spin-Mixing Manipulation by Magnetic Fields 2467.6 Summary 254Acknowledgments 255References 2558 Thin-Film Molecular Nanophotonics 261Tetsuzo Yoshimura8.1 Introduction 2618.2 Molecular Assembling for Nanoscale Tailored Structures 2628.3 Molecular Layer Deposition 2648.4 Organic Multiple Quantum Dots (MQDs) 2678.5 Self-Organized Lightwave Network 2838.6 Proposed Applications 2928.7 Summary 305References 3059 Light-Harvesting Materials for Organic Electronics 311Damien Joly Juan Luis Delgado Carmen Atienza and Nazario Martın9.1 Introduction 3119.2 Photoinduced Electron Transfer (PET) in Artificial Photosynthetic Systems 3139.3 Fullerenes for Organic Photovoltaics 3239.4 Molecular Wires 3309.5 Conclusions 335Acknowledgments 335References 33610 Recent Advances in Metal Oxide-Based Photoelectrochemical Hydrogen Production 343Bob C. Fitzmorris and Jin Z. Zhang10.1 Introduction 34310.2 Materials for PEC Hydrogen Production 34610.3 Conclusion 362References 36311 Optical Control of Cold Atoms and Artificial Electromagnetism 371Gediminas Juzeliunas and Patrik Ohberg11.1 Introduction 37111.2 Atomic Bose–Einstein Condensates 37211.3 Optical Forces on Atoms 376References 393Index 401