Quantum dots : fundamentals, applications, and frontiers : Proceedings of the NATO Advanced Research Workshop on "Quantum Dots : Fundamentals, Applications and Frontiers" Crete, Greece, 20 24 July 2003
The morphology that results during the growth of a material on the substrate of a different material is central to the fabrication of all quantum heterostructures. This morphology is determined by several factors, including the manner in which strain is accommodated if the materials have different l...
محفوظ في:
| مؤلفون آخرون: | , , , |
|---|---|
| التنسيق: | Livre numérique |
| اللغة: | Anglais |
| منشور في: |
Dordrecht :
Springer Netherlands
[20..].
Cham : Springer Nature |
| الطبعة: | 1st ed. 2005. |
| سلاسل: | NATO Science Series II: Mathematics, Physics and Chemistry, Mathematics, Physics and Chemistry
190 |
| الوصول للمادة أونلاين: | Accès sur la plateforme de l'éditeur Accès sur la plateforme Istex Accès Université d'Orléans Accès INSA CVL |
| ملاحظة: |
Archives Springer e-books (Licence nationale) Archives Springer e-books (Licence nationale) |
| Autres localisations: | Voir dans le Sudoc |
| Edition sous un autre format: | • Quantum dots: fundamentals, applications, and frontiers, [proceedings of the NATO Advanced Research Workshop on Quantum Dots: Fundamentals, Applications and Frontiers, Crete, Greece, 20 to 24 July 2003], edited by Bruce A. Joyce ... [et al.], Dordrecht, Springer, Published in cooperation with NATO Public Diplomacy Division, 2005, 1 vol. (XV-395 p.), NATO science series, 1-4020-3313-3 |
جدول المحتويات:
- Atomistic Processes during Quantum Dot Formation Quantum Dots in the InAs/GaAs System First-Principles Study of InAs/GaAs(001) Heteroepitaxy Formation of Two-Dimensional Si/Ge Nanostructures Observed by STM Diffusion, Nucleation and Growth on Metal Surfaces The Stranski-Krastanov Transition The Mechanism of the Stranski-Krastanov Transition Off-Lattice KMC Simulations of Stranski-Krastanov-Like Growth Temperature Regimes of Strain-Induced InAs Quantum Dot Formation Kinetic Modelling of Strained Films: Effects of Wetting and Facetting Ge/Si Nanostructures with Quantum Dots Grown by Ion-Beam-Assisted Heteroepitaxy Self-Assembly of Quantum Dot Arrays Lateral Organization of Quantum Dots on a Patterned Substrate Some Thermodynamic Aspects of Self-Assembly of Quantum Dot Arrays The Search for Materials with Self-Assembling Properties: The Case of Si-Based Nanostructures Structure and Composition of Quantum Dots X-Ray Scattering Methods for the Study of Epitaxial Self-Assembled Quantum Dots Carbon-Induced Ge Dots On Si(100): Interplay of Strain and Chemical Effects Growth Information Carried by Reflection High-Energy Electron Diffraction Electrons and Holes in Quantum Dots Efficient Calculation of Electron States in Self-Assembled Quantum Dots: Application to Auger Relaxation Quantum Dot Molecules and Chains Collective Properties of Electrons and Holes in Coupled Quantum Dots Phase Transitions in Wigner Molecules Fast Control of Quantum States in Quantum Dots: Limits due to Decoherence Optical Properties of Quantum Dots Real SpaceAb Initio Calculations of Excitation Energies in Small Silicon Quantum Dots GeSi/Si(001) Structures with Self-Assembled Islands: Growth and Optical Properties Quantum Dots in High Electric Fields: Field and Photofield Emission from Ge Nanoclusters on Si(100) Optical Emission Behavior of Si Quantum Dots Strain-Driven Phenomena upon Overgrowth of Quantum Dots: Activated Spinodal Decomposition and Defect Reduction

