Isbn: 9783319242514 - Diffractive Optics and Nanophotonics: Resolution Below the Diffraction Limit: 0 (springerbriefs in Physics) (9 results)

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  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

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  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

    • Softcover

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    Taschenbuch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - In this book the authors present several examples of techniques used to overcome the Abby diffraction limit using flat and 3D diffractive optical elements, photonic crystal lenses, photonic jets, and surface plasmon diffractive optics. The structures discussed can be used in the microwave and THz range and also as scaled models for optical frequencies. Such nano-optical microlenses can be integrated, for example, into existing semiconductor heterostructure platforms for next-generation optoelectronic applications. Chapter 1 considers flat diffractive lenses and innovative 3D radiating structures including a conical millimeter-wave Fresnel zone plate (FZP) lens proposed for subwavelength focusing. In chapter 2 the subwavelength focusing properties of diffractive photonic crystal lenses are considered and it is shown that at least three different types of photonic crystal lens are possible. With the aim of achieving subwavelength focusing, in chapter 3 an alternative mechanism to produce photonic jets at Terahertz frequencies (terajets) using 3D dielectric particles of arbitrary size (cuboids) is considered. A scheme to create a 2D 'teraknife' using dielectric rods is also discussed. In the final chapter the successful adaptation of free-space 3D binary phase-reversal conical FZPs for operation on surface plasmon-polariton (SPP) waves demonstrates that analogues of Fourier diffractive components can be developed for in-plane SPP 3D optics. Reviewing theory, modelling and experiment, this book will be a valuable resource for students and researchers working on nanophotonics and sub-wavelength focusing and imaging.…

  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

    • Softcover

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    Paperback. Condition: Brand New. 65 pages. 9.00x6.00x0.25 inches. In Stock.

  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

    • Softcover

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    Taschenbuch. Condition: Neu. Diffractive Optics and Nanophotonics | Resolution Below the Diffraction Limit | Igor Minin (u. a.) | Taschenbuch | SpringerBriefs in Physics | xiv | Englisch | 2015 | Springer | EAN 9783319242514 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. …

  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

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  • Language: English

    Published by Springer International Publishing Nov 2015, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

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    Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -In this book the authors present several examples of techniques used to overcome the Abby diffraction limit using flat and 3D diffractive optical elements, photonic crystal lenses, photonic jets, and surface plasmon diffractive optics. The structures discussed can be used in the microwave and THz range and also as scaled models for optical frequencies. Such nano-optical microlenses can be integrated, for example, into existing semiconductor heterostructure platforms for next-generation optoelectronic applications. Chapter 1 considers flat diffractive lenses and innovative 3D radiating structures including a conical millimeter-wave Fresnel zone plate (FZP) lens proposed for subwavelength focusing. In chapter 2 the subwavelength focusing properties of diffractive photonic crystal lenses are considered and it is shown that at least three different types of photonic crystal lens are possible. With the aim of achieving subwavelength focusing, in chapter 3 an alternative mechanism to produce photonic jets at Terahertz frequencies (terajets) using 3D dielectric particles of arbitrary size (cuboids) is considered. A scheme to create a 2D 'teraknife' using dielectric rods is also discussed. In the final chapter the successful adaptation of free-space 3D binary phase-reversal conical FZPs for operation on surface plasmon-polariton (SPP) waves demonstrates that analogues of Fourier diffractive components can be developed for in-plane SPP 3D optics. Reviewing theory, modelling and experiment, this book will be a valuable resource for students and researchers working on nanophotonics and sub-wavelength focusing and imaging. 84 pp. Englisch.…

  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

    • Softcover
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  • Language: English

    Published by Springer, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

    • Softcover
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    Seller: Biblios, frankfurt am main, HESSE, GermanyBiblios

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  • Language: English

    Published by Springer, Springer Nov 2015, 2015

    3319242512 / 9783319242514

    Series: Book 46 of 151 - SpringerBriefs in Physics

    • Softcover
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    Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -In this book the authors present several examples of techniques used to overcome the Abby diffraction limit using flat and 3D diffractive optical elements, photonic crystal lenses, photonic jets, and surface plasmon diffractive optics. The structures discussed can be used in the microwave and THz range and also as scaled models for optical frequencies. Such nano-optical microlenses can be integrated, for example, into existing semiconductor heterostructure platforms for next-generation optoelectronic applications.Chapter 1 considers flat diffractive lenses and innovative 3D radiating structures including a conical millimeter-wave Fresnel zone plate (FZP) lens proposed for subwavelength focusing. In chapter 2 the subwavelength focusing properties of diffractive photonic crystal lenses are considered and it is shown that at least three different types of photonic crystal lens are possible.With the aim of achieving subwavelength focusing, in chapter 3 an alternative mechanism to produce photonic jets at Terahertz frequencies (terajets) using 3D dielectric particles of arbitrary size (cuboids) is considered. A scheme to create a 2D ¿teraknife¿ using dielectric rods is also discussed. In the final chapter the successful adaptation of free-space 3D binary phase-reversal conical FZPs for operation on surface plasmon-polariton (SPP) waves demonstrates that analogues of Fourier diffractive components can be developed for in-plane SPP 3D optics.Reviewing theory, modelling and experiment, this book will be a valuable resource for students and researchers working on nanophotonics and sub-wavelength focusingand imaging.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 84 pp. Englisch.…