Description

Book Synopsis
Quantum dot nano structures are interesting for applications in information technology and play a growing role in data storage, medical and biological applications. Understanding quantum nanomaterials is thus the key for the conception and optimization of novel structures.This monograph gives an overview of the theory and introduces the concepts of advanced computational modelling of quantum dot nanomaterials and devices ranging from phenomenological models up to fully quantum theoretical description.

Table of Contents
Theory: Hierarchy of Microscopic and Phenomenological Models; Light Meets Matter I: Microscopic Carrier Effects and Fundamental Light-Matter Interaction; Light Meets Matter II: Dynamic Space-Time Coupling; Performance and Characterisation of Quantum Dot Lasers and Amplifiers; Nonlinear Light-Dynamics and Pulse Amplification in Active Dot Materials; High-Speed Dynamics; Noise and Disorder on the Nanoscale; Luminescence Properties of Quantum Dot Microcavity Lasers.

Photonics Of Quantum-dot Nanomaterials And

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    A Hardback by Ortwin Hess, Edeltraud Gehrig

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      Publisher: Imperial College Press
      Publication Date: Publication Date: 23/09/2011
      ISBN13: 9781848165212, 978-1848165212
      ISBN10: 1848165218

      Description

      Book Synopsis
      Quantum dot nano structures are interesting for applications in information technology and play a growing role in data storage, medical and biological applications. Understanding quantum nanomaterials is thus the key for the conception and optimization of novel structures.This monograph gives an overview of the theory and introduces the concepts of advanced computational modelling of quantum dot nanomaterials and devices ranging from phenomenological models up to fully quantum theoretical description.

      Table of Contents
      Theory: Hierarchy of Microscopic and Phenomenological Models; Light Meets Matter I: Microscopic Carrier Effects and Fundamental Light-Matter Interaction; Light Meets Matter II: Dynamic Space-Time Coupling; Performance and Characterisation of Quantum Dot Lasers and Amplifiers; Nonlinear Light-Dynamics and Pulse Amplification in Active Dot Materials; High-Speed Dynamics; Noise and Disorder on the Nanoscale; Luminescence Properties of Quantum Dot Microcavity Lasers.

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