Advances in Solid State Physics

Editors:

ISBN: 978-3-540-42907-4 (Print) 978-3-540-45618-6 (Online)

Table of contents (40 chapters)

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  1. Quantum Dots

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      Pages 3-12

      High Magnetic Fields in Semiconductor Nanostructures: Spin Effects in Single InAs Quantum Dots

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      Pages 13-26

      On the Way to the II–VI Quantum Dot VCSEL

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      Pages 27-37

      ZnCdSe Quantum Structures — Growth, Optical Properties and Applications

  2. Optics

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      Pages 41-53

      Photonic Crystals: Optical Materials for the 21st Century

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      Pages 55-66

      Quantum Optical Effects in Semiconductors

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      Pages 67-79

      Beryllium Chalcogenides: Interface Properties and Potential for Optoelectronic Applications

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      Pages 81-91

      ZnO Metal Organic Vapor Phase Epitaxy: Present State and Prospective Application in Optoelectronics and Spin Electronics

  3. Electron and Spin Transport

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      Pages 95-106

      Electrical Spin Injection from Ferromagnetic Metals into GaAs

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      Pages 107-119

      Probing the Conduction Channels of Gold Atomic-Size Contacts: Proximity Effect and Multiple Andreev Reflections

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      Pages 121-131

      Metal-Insulator Transitions at Surfaces

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      Pages 133-149

      The Role of Contacts in Molecular Electronics

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      Pages 151-162

      Electronic Transport, Spectral Fine Structures, and Atom Clusters in Quasicrystals and Approximants

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      Pages 163-173

      Full Counting Statistics of Mesoscopic Electron Transport

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      Pages 175-185

      Nonequilibrium Transport through a Kondo-dot in a Magnetic Field

  4. Thin Films and Surfaces

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      Pages 189-206

      Electrons, Phonons and Excitons at Semiconductor Surfaces

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      Pages 207-218

      Diffuse Interface Model for Microstructure Evolution

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      Pages 219-231

      Rapidly Produced Thin Films: Laser-Plasma Induced Surface Reactions

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      Pages 231-240

      Nanotechnology — Bottom-up Meets Top-down

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      Pages 241-251

      Local Ordering Processes in Ferroelectric, Glass-like and Modulated phases: An EPR Study

  5. Superconducting Systems

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      Pages 255-266

      Superconductivity and Non-Fermi Liquid Normal State of Itinerant Ferromagnets

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