Benjamin lingnau (14 Ergebnisse)

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  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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  • Sprache: Englisch

    Verlag: Springer, 2019

    331979843X / 9783319798431

    Serie: Buch 78 von 797 - Springer Theses

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    Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.

  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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    Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH

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    Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.

  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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  • Sprache: Englisch

    Verlag: Springer, 2019

    331979843X / 9783319798431

    Serie: Buch 78 von 797 - Springer Theses

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    PAP. Zustand: New. New Book. Shipped from UK. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000.

  • Sprache: Englisch

    Verlag: Springer International Publishing Mrz 2019, 2019

    331979843X / 9783319798431

    Serie: Buch 78 von 797 - Springer Theses

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    Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes. 208 pp. Englisch.

  • Sprache: Englisch

    Verlag: Springer International Publishing Dez 2015, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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    Buch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes. 208 pp. Englisch.

  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

    • Hardcover
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  • Sprache: Englisch

    Verlag: Springer, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

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    Sprache: Englisch

    Verlag: Springer International Publishing, 2019

    331979843X / 9783319798431

    Serie: Buch 78 von 797 - Springer Theses

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    Taschenbuch. Zustand: Neu. Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices | Benjamin Lingnau | Taschenbuch | xiii | Englisch | 2019 | Springer International Publishing | EAN 9783319798431 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu Print on Demand.

  • Sprache: Englisch

    Verlag: Springer International Publishing, Springer International Publishing Mär 2019, 2019

    331979843X / 9783319798431

    Serie: Buch 78 von 797 - Springer Theses

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    Taschenbuch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 208 pp. Englisch.

  • Sprache: Englisch

    Verlag: Springer, Springer Dez 2015, 2015

    3319258036 / 9783319258034

    Serie: Buch 78 von 797 - Springer Theses

    • Hardcover
    • Print-on-Demand

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    Buch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 208 pp. Englisch.