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State of the art of condensed matter physics
Up-to-date reviews
State of the art of condensed matter physics Up-to-date reviews In cooperation with the Deutsche Physikalische Gesellschaft Also available online in LINK (http://link.springer.de/series/assp/)
Texte du rabat
This volume contains most of the invited talks of the 2001 meeting of the Solid State Physics Section of the Deutsche Physikalische Gesellschaft held from March 26 to 30 in Hamburg, Germany. The topics covered reflect the present activities in this lively domain of modern physics and are thus supposed to flashlight the state-of-the-art in condensed matter physics in Germany in the year 2001.
Résumé
State of the art of condensed matter physics
Up-to-date reviews
Contenu
Quantum Dots.- A Quantum Dot Single Photon Source.- Control of Light in Microresonators.- Numerical Renormalization Group Analysis of Interacting Quantum Dots.- Few-Particle Effects in Self-Organized Quantum Dots.- Spectroscopy on Single Dots Monitoring Carrier Interaction with the Environment.- Optical Spectroscopy on Single Quantum Dots: Charged Excitons.- Long-Wavelength Buried-Tunnel-Junction Vertical-Cavity Surface-Emitting Lasers.- Optics.- Photon Echo Experiments on Electron-Plasmon Quantum Kinetics in GaAs.- Phonon and Coulomb Quantum Kinetics for Femtosecond Spectroscopy.- Quantum Kinetic Effects in Semiconductors Studied via Femtosecond Transmission Measurements.- Phonon Quantum Kinetics in Spatially Inhomogeneous Systems.- Propagating Anisotropic Solitons in Active Semiconductor Media.- Photorefractive Spatial Solitons.- X-Ray Magneto-Optics.- Electron and Spin Transport.- Spintronics: Spin Electronics and Optoelectronics in Semiconductors.- Transport in Quasi One-Dimensional Systems.- Transport in Nanostructures: A Comparison between Nonequilibrium Green Functions and Density Matrices.- Spin-Orbit Coupling in Two-Dimensional Electron and Hole Systems.- Nanostructures.- Lanthanide-Silicide Films on Silicon Surfaces.- Development of Texture and Microstructure in MgO Buffer Layers Using Ion-Beam Assisted Pulsed Laser Deposition.- Modelling of Structure Formation and Mechanical Stresses during Growth of Vapor Deposited Amorphous Thin Films.- Some Materials Science Aspects of PVD Hard Coatings.- X-Ray Diffraction and X-Ray Reflectivity Applied to Investigation of Thin Films.- Three-Dimensional Electric Field Probing of Ferroelectrics on the Nanometer Scale Using Scanning Force Microscopy.- Superconducting Systems.- Terahertz Hilbert Spectroscopy by High-T cJosephson Junctions.- Discrete Breathers in Condensed Matter.- Quantum Phase Transitions and Collective Modes in d-Wave Superconductors.- Complex Systems.- Physics in Cell Biology: Actin as a Model System for Polymer Physics.- The Wonderful World of Active Many-Particle Systems.- Pattern Formation in Dissipative Systems: A Particle Approach.- Structure Formation by Aggregation: Models and Applications.- Amorphous Thin Film Growth: Modeling and Pattern Formation.- Dynamic Processes at the Glass Transition.- Semiclassical Theory.- The Trace Formula between Classical and Quantum Mechanics.- Tunneling in Complex Systems and Periodic Orbits.- The Gutzwiller Trace Formula for Quantum Systems with Spin.- Semiclassical Description of Shell Effects in Finite Fermion Systems.- Quantum Signatures of Typical Chaotic Dynamics.- The Semiclassical Tool in Complex Physical Systems: Mesoscopics and Decoherence.- Cohesion and Stability of Metal Nanowires: A Quantum Chaos Approach.- Magnetism.- Magnetochemistry: Compounds and Concepts.- Lorentz Electron Microscopic Observation of Micromagnetic Configurations in Nanostructured Materials.- Laser-Control of Ferro- and Antiferromagnetism.- Spin-Polarized Photoelectron Emission Microscopy of Magnetic Nanostructures.- Study of Excitations in Structurally Incommensurately Modulated Solids by Means of Nuclear Magnetic Resonance.- High Resolution X-Ray Detection Using Metallic Magnetic Calorimeters.- Magnetotransport Properties of Thin Films of Magnetic Perovskites.- Dynamics of Ferroelectric Domain Walls.- Magnetic Nanoparticles: The Simulation of Thermodynamic Properties.- Micromagnetic Simulation of Switching Events.
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