
Physics of Quantum Rings
Description
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Reviews / Votes
"The book explores in depth the physics of quantum interference phenomena such as the Aharonov-Bohm effect that are inherent to quantum rings. A good third of the book is devoted to fabrication, characterization and physical properties of such structures. The fabrication covers methods involving self-assembly by molecular beam epitaxy crystal growth as well as by methods of high resolution lithography. A second third is devoted to the theory of quantum rings, in particular under the angle of their material properties, their optical properties, coulomb interaction and last but not least their mathematical differential properties. Finally, a third of the book is specifically focusing on Aharonov-Bohm of excitons, a very novel effect inherent to the optical properties of quantum rings." (Khaled Karrai, Scientific Director, attocube systems AG)More details
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Content
Preface.- Quantum Ring: A Unique Playground for the Quantum-Mechanical Paradigm.- Fabrication, Characterization and Physical Properties.- Growth and Spectroscopy of Semiconductor Quantum Rings.- Quantum Rings: Fabrication and Optical Properties.- Self-organized Quantum Rings: Physical Characterization and Theoretical Modeling.- Scanning-probe Electronic Imaging of Lithographically Patterned Quantum Rings.- Self-organized Formation and XSTM-Characterization of GaSb/GaAs Quantum Rings.- Self-assembled Semiconductor Quantum Rings Complexes by Droplet Epitaxy: Growth and Physical Properties.- Aharonov-Bohm Effect for Excitons.- New Versions of the Aharonov-Bohm Effect in Quantum Rings.- Aharonov-Bohm Effect for Neutral Exctions in Quantum Rings.- Optical Aharonov-Bohm Effect in Type-II Quantum Dots.- Theory.- Strained Quantum Rings.- Theoretical Modeling of Electronic and Optical Properties of Semiconductor Quantum Rings.- Coulomb Interaction in Finite-Width Quantum Rings. Differential Geometry Applied to Rings and Möbius Nanostructures.- Hole Mixing in Semiconductor Quantum Rings.- Engineering of Electron States and Spin Relaxation in Quantum Rings and Quantum Dot-Ring Nanostructures.
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