Advances in Solid State Physics 38

Editors:

ISBN: 978-3-540-41575-6 (Print) 978-3-540-44558-6 (Online)

Table of contents (45 chapters)

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  1. No Access

    Book Chapter

    Pages 1-14

    Present status of InGaN-based UV/blue/green LEDs and laser diodes

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    Book Chapter

    Pages 15-28

    Group III-nitride based blue emitters

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    Book Chapter

    Pages 29-45

    Laser processes in group-III nitrides

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    Book Chapter

    Pages 47-60

    Growth and characterization of II–VI semiconductor lasers

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    Book Chapter

    Pages 61-73

    Many-body theory for II–VI semiconductor laser media

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    Book Chapter

    Pages 75-86

    SiC: Polar properties and their influence on technology and devices

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    Book Chapter

    Pages 87-100

    Growth mechanisms of SiC on α-SiC(0001) prepared by solid-source molecular beam epitaxy

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    Book Chapter

    Pages 101-110

    Si1−x−yGexCy alloys: Growth and properties of a new semiconducting material

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    Book Chapter

    Pages 111-123

    Correlations between microstructure and electronic properties in amorphous carbon based materials

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    Book Chapter

    Pages 125-138

    Characterization of CVD-diamond layers: Electronic states

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    Book Chapter

    Pages 139-152

    Electron ground states in a few-electron quantum dot

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    Book Chapter

    Pages 153-165

    Atomically precise, coupled quantum dots fabricated by cleaved edge overgrowth

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    Book Chapter

    Pages 167-181

    Raman spectroscopy of quantum dots

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    Book Chapter

    Pages 183-192

    Charged excitons in InAs quantum dots

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    Book Chapter

    Pages 193-202

    Charge fluctuations, chaotic trajectories, and the coulomb blockade

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    Book Chapter

    Pages 203-214

    Diode lasers based on quantum dots

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    Book Chapter

    Pages 215-224

    Sonoluminescence: When bubbles glow

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    Book Chapter

    Pages 225-249

    Bloch oscillations in semiconductor superlattices

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    Book Chapter

    Pages 251-263

    Optical properties of localized excitons in nanostructures: Theoretical aspects

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    Book Chapter

    Pages 265-279

    Superradiant exciton-light coupling in semiconductor heterostructures—Theory

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