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Self-organization in growth of quantum dot superlattices.

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TLDR
The growth of multilayer arrays of coherently strained islands self-organizes into a more regular three-dimensional arrangement, providing a possible route to obtain the size uniformity needed for electronic applications of quantum dot arrays.
Abstract
We investigate the growth of multilayer arrays of coherently strained islands, which may serve as ``quantum dots'' in electronic devices. A simple model reproduces the observed vertical correlation between islands in successive layers. However, the arrangement of islands is not simply repeated from layer to layer. Instead, the island size and spacing grow progressively more uniform. In effect, the structure ``self-organizes'' into a more regular three-dimensional arrangement, providing a possible route to obtain the size uniformity needed for electronic applications of quantum dot arrays.

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Analytical calculation of the strain field of single and periodic misfitting polygonal wires in a half-space

Frank Glas
TL;DR: In this paper, the strain field induced by the coherent elastic relaxation of misfitting wires having an arbitrary polygonal section and buried in a half-space, assuming linear isotropic elasticity, is analyzed.
Journal ArticleDOI

Copper thin film of alternating textures

TL;DR: Using dc magnetron sputtering technique, a copper film of alternating textures through self-organization was reported in this paper, where the texture evolution was attributed to the competition of surface and strain energies.
Journal ArticleDOI

Electronic structure of nanometer-size quantum dots and quantum rings

TL;DR: In this paper, the conduction band electronic states in self-assembled dots, double dots and ring-like structures are reviewed in view of contributions from quantization, magnetic forces and Coulomb interaction.
Journal ArticleDOI

Kinetic Monte Carlo simulation of self-organized pattern formation in thin film deposition

TL;DR: In this article, the growth kinetics of thin semiconducting or dielectric films were studied by means of kinetic Monte Carlo simulations (KMC) in homoepitactic systems.
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Effect of deposition time on optical and luminescence properties of ZnS thin films prepared by photo assisted chemical deposition technique

TL;DR: In this paper, photo assisted chemical deposition (PCD) is used for the deposition of compound semiconducting materials which is less explored than other chemical methods like chemical bath deposition, electro chemical deposition, etc.
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