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Titlebook: Advances in Solid State Physics 37; Reinhard Helbig Conference proceedings 1998 Springer-Verlag Berlin Heidelberg 1998 condensed matter.co

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Computational Imaging and Vision μm. The latter 0.18 μm structure is to be expected at the turn of the century. Therefore the requirements which have to be fulfilled by the base material of the integrated circuits, the silicon wafers, are constantly rising. Along with the reduction of the structure size, a change in the wafer diam
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Computer Vision and Action RecognitionUCOLEDs). The generation of mixed colors, as turquoise and magenta, is also demonstrated. The underlying physical principle is that of luminescence downconversion (Stokes shift), as typical for organic dye molecules and many inorganic phosphors. For white light generation via the LUCOLED principle,
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Image and Video Processing Fundamentals,no interference is caused by the coupling of excitons belonging to higher subbands (Landau levels) to continua of lower subbands (Laudau levels) via Coulomb interaction. We formulate conditions for Fano interference, identify low-dimensional semiconductors in which Fano resonances should be observed
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https://doi.org/10.1007/978-3-540-89682-1inearities due to phase space filling, plasma screening and dephasing are consistently included on a microscopic level. Results for the influence of inhomogeneous exciton broadening on the plasma saturation of normal-mode coupling as well as pulse propagation effects are presented.
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https://doi.org/10.1007/978-3-540-89682-1ynamic processes which are of interest for a high modulation bandwidth in information transfer can thus be investigated on a model system and eventually be applied in the design of actual devices. The novel switching mechanism presented in this article enables the modulation on a sub-picosecond time
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https://doi.org/10.1007/978-3-642-10226-4ng emission is studied. The microcavity samples contain one or two InGaAs/GaAs quantum wells with very narrow absorption linewidths (1 meV) resulting in record normal-mode-coupling splitting-to-linewidth ratios. For zero exciton-cavity detuning, the transmission peaks and reflectance dips vanish wit
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