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Titlebook: Semiconductor Nanostructures; Dieter Bimberg Book 2008 Springer-Verlag Berlin Heidelberg 2008 Dispersion.Nanostructures.Self-organised gro

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Narrow-Gap Nanostructuresin Strong Magnetic Fields,utilization to fabricate zero-gap II–VI semiconductor quantum structures: quantum wells, quantum wires, and quantum dots. The special feature of these nanostructures is the intrinsic population of the quantum states by electrons (as many as 50–500 electrons in a single dot for example), which allows
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,Optical Properties of III–V Quantum Dots,lighted. The renormalization of transition energies in InGaAs QDs is found to be proportional to the number of excitons per dot and in the wetting layer. Resonant Raman scattering on such dots reveals localized TO- and LO-like phonon modes being blue shifted with respect to unstrained InAs bulk mode
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Ultrafast Coherent Spectroscopy of Single Semiconductor Quantum Dots,r-field microscopy to probe the nonlinear optical response of a single quantum dot and of a pair of dipole-coupled quantum dots on a femtosecond time scale. We demonstrate coherent control of both amplitude and phase of the coherent quantum dot polarization by studying Rabi oscillations and the opti
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Book 2008 carrier leads to complete quantization of the energy levels, density of states, etc. Such “quantum dots” are more similar to giant atoms in a dielectric cage than to classical solids or semiconductors showing a dispersion of energy as a function of wavevector. Their electronic and optical propertie
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Udo W. Pohl,André Strittmattercalled .—to the setting of non-deterministic matrices (.), characterizing the Nmatrix models of an arbitrary logic through a generalization of the standard class operators to the non-deterministic setting. We highlight the main differences that appear in this more general setting, in particular: the
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