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Titlebook: Quantum Dots: Fundamentals, Applications, and Frontiers; Proceedings of the N Bruce A. Joyce,Pantelis C. Kelires,Dimitri D. Vved Conference

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Efficient Calculation of Electron States in Self-Assembled Quantum Dots: Application to Auger Relaxalation of Auger relaxation rates is detailed. The method is based on expansion of the dot states in a harmonic oscillator basis whose parameters are optimised to improve the convergence rate. This results in at least an order of magnitude reduction in the number of basis states required to represent
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Collective Properties of Electrons and Holes in Coupled Quantum Dotss and the role of tunneling. We discuss, in particular, exact diagonalization results for biexciton binding energy, electron-hole localization, magnetic-field induced Wigner molecules, and spin ordering.
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Some Thermodynamic Aspects of Self-Assembly of Quantum Dot Arraysn addition to the critical size of the two-dimensional (2D) islands for the 2D-3D transformation to occur, we find that the wetting depends strongly on the density of the array, the size distribution and the shape of the islands.
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Bruce A. Joyce,Pantelis C. Kelires,Dimitri D. VvedBreadth of coverage, from growth fundamentals to applications.Depth of coverage, with sections on atomistic growth fundamentals, self-organization, characterization, electronic and optical properties.
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