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 | HANDBOOK OF SELF ASSEMBLED SEMICONDUCTOR NANOSTRUCTURES FOR NOVEL DEVICES IN PHOTONICS AND ELECTRONICS
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Edited By
Mohamed Henini, The University of Nottingham, School of Physics and Astronomy, UK
Description
The self-assembled nanostructured materials described in this book offer a number of advantages over conventional material technologies
in a wide range of sectors. World leaders in the field of self-organisation of nanostructures review the current status of research and
development in the field, and give an account of the formation, properties, and self-organisation of semiconductor nanostructures. Chapters
on structural, electronic and optical properties, and devices based on self-organised nanostructures are also included.
Future research
work on self-assembled nanostructures will connect diverse areas of material science, physics, chemistry, electronics and optoelectronics.
This book will provide an excellent starting point for workers entering the field and a useful reference to the nanostructured materials
research community. It will be useful to any scientist who is involved in nanotechnology and those wishing to gain a view of what is
possible with modern fabrication technology.
Mohamed Henini is a Professor of Applied Physics at the University of
Nottingham. He has authored and co-authored over 750 papers in international journals and conference proceedings and is the founder of
two international conferences. He is the Editor-in-Chief of Microelectronics Journal and has edited three previous Elsevier
books.
Audience
This book is suitable for post-graduate students, researchers and semiconductor manufacturers.
Contents
1. Self-Organized Quantum Dot Multilayer Structures
2. InAs Quantum Dots on AlxGa1-xAs Surfaces and in an AlxGa1-xAs Matrix
3. Optical
Properties of In(Ga)As/GaAs Quantum Dots for Optoelectronic Devices
4. Cavity Quantum Electrodynamics with Semiconductor Quantum Dots
5. InAs Quantum Dot Formation Studied at the Atomic Scale by Cross-sectional Scanning Tunnelling Microscopy
6. Growth and Characterization
of Structural and Optical Properties of Polar and Non-polar GaN Quantum Dots
7. Optical and Vibrational Properties of Self-Assembled
GaN Quantum Dots
8. GaSb/GaAs Quantum Nanostructures by Molecular Beam Epitaxy
9. Growth and Characterization of ZnO Nano- and Microstructures
10. Miniband-related 1.4 – 1.8 im Luminescence of Ge/Si Quantum Dot Superlattices
11. Effects of the Electron-Phonon Interaction in Semiconductor
Quantum Dots
12. Slow Oscillation and Random Fluctuation in Quantum Dots: Can we Overcome?
13. Radiation Effects in Quantum Dot Structures
14. Probing and Controlling the Spin State of Single Magnetic Atoms in an Individual Quantum Dot
15. Quantum Dot Charge and Spin Memory
Devices
16. Engineering of Quantum Dot Nanostructures for Photonic Devices
17. Advanced Growth Techniques of InAs-system Quantum Dots
for Integrated Nanophotonic Circuits
18. Nanostructured Solar Cells
19. Quantum Dot Superluminescent Diodes
20. Quantum Dot-based Mode-locked
Lasers and Applications
21. Quantum Dot Infrared Photodetectors by Metal-Organic Chemical Vapour Deposition
22. Quantum Dot Structures
for Multi-band Infrared and Terahertz Radiation Detection
23. Optically Driven Schemes for Quantum Computation Based on Self-assembled
Quantum Dots
24. Quantum Optics with Single CdSE/ZnS Colloidal Nanocrystals
25. PbSe Core, PbSe/PbS and PbSe/PbSe/PbSexS1-x Core-Shell
Nanocrystal Quantum Dots: Properties and Applications
26. Semiconductor Quantum Dots for Biological Applications
27. Quantum Dot Modification
and Cytotoxicity
28. Colloidal Quantum Dots (QDs) in Optoelectronic Devices – Solar Cells, Photodetectors, Light-emitting Diodes
| Bibliographic details |
Hardbound, 864 pages, publication date: JUL-2008
ISBN-13: 978-0-08-046325-4
ISBN-10: 0-08-046325-8
Imprint: ELSEVIER
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| Price and Ordering |
Price:
USD 200 GBP 120.99 EUR 142.95
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Last update: 5 Sep 2009
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