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Titlebook: Advances in Solid State Physics; Bernhard Kramer Book 2004 Springer-Verlag Berlin Heidelberg 2004 Condensed Matter.Quantum Dots, Wires and

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The Physics of Radiation Transporttate. These depend sensitively on the growth conditions. X-ray diffraction techniques are used in order to investigate series of SiGe/Si(001) island samples grown by molecular beam epitaxy at various temperatures. The chemical composition distribution and the in-plane strain of uncapped islands are
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The Physics of Electromagnetic Cascadepin degrees of freedom. Angle-resolved photoelectron spectroscopy (ARPES) on the electronic structure of the quasi-1D organic conductor TTF-TCNQindeed reveals significant discrepancies to band theory. Instead, the experimental spectra can be well explained by the 1D Hubbard model, which accounts for
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1438-4329 available online.The present volume, 44 of .Advances in Solid State Physics., contains the written versions of most of the plenary and invited lectures of the Spring Meeting of the Condensed Matter Physics section of the Deutsche Physikalische Gesellschaft held from March 8 to 12, 2004 in Regensburg
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Computer Systems for Process Controled incorporation of defects and waveguides in large-area structures. Scanning electron micrographs and optical spectra of different Photonic Crystals are presented and compared with numerical simulations. Our roadmap to infiltrate the polymeric templates with high refractive-index materials is outlined.
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K. Fruehauf,J. Ludewig,H. Sandmayronal photonic crystal waveguides are explained both phenomenologically and by simulations using Maxwells Theory. Possible new ways for applications of semiconductor photonic bandgap devices are also discussed.
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Three-Dimensional Lithography of Photonic Crystals,ed incorporation of defects and waveguides in large-area structures. Scanning electron micrographs and optical spectra of different Photonic Crystals are presented and compared with numerical simulations. Our roadmap to infiltrate the polymeric templates with high refractive-index materials is outlined.
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Photonic Crystal Waveguides: Dispersion, Anomalous Refraction and Applications,onal photonic crystal waveguides are explained both phenomenologically and by simulations using Maxwells Theory. Possible new ways for applications of semiconductor photonic bandgap devices are also discussed.
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