Capture and Relaxation in Self Assembled Semiconductor Quantum Dots

Capture and Relaxation in Self Assembled Semiconductor Quantum Dots
Author: Robson Ferreira,Gerald Bastard
Publsiher: Morgan & Claypool Publishers
Total Pages: 112
Release: 2016-02-23
Genre: Technology & Engineering
ISBN: 9781681740898

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This is an overview of different models and mechanisms developed to describe the capture and relaxation of carriers in quantum-dot systems. Despite their undisputed importance, the mechanisms leading to population and energy exchanges between a quantum dot and its environment are not yet fully understood. The authors develop a first-order approach to such effects, using elementary quantum mechanics and an introduction to the physics of semiconductors. The book results from a series of lectures given by the authors at the Master’s level.

Capture and Relaxation in Self Assembled Semiconductor Quantum Dots

Capture and Relaxation in Self Assembled Semiconductor Quantum Dots
Author: R Ferreira
Publsiher: Myprint
Total Pages: 114
Release: 2015-12-18
Genre: Electronic Book
ISBN: 1681747510

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Self Assembled Quantum Dots

Self Assembled Quantum Dots
Author: Zhiming M Wang
Publsiher: Springer Science & Business Media
Total Pages: 470
Release: 2007-11-29
Genre: Technology & Engineering
ISBN: 9780387741918

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This multidisciplinary book provides up-to-date coverage of carrier and spin dynamics and energy transfer and structural interaction among nanostructures. Coverage also includes current device applications such as quantum dot lasers and detectors, as well as future applications to quantum information processing. The book will serve as a reference for anyone working with or planning to work with quantum dots.

Self Assembled InGaAs GaAs Quantum Dots

Self Assembled InGaAs GaAs Quantum Dots
Author: Anonim
Publsiher: Academic Press
Total Pages: 368
Release: 1999-03-29
Genre: Technology & Engineering
ISBN: 0080864589

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This volume is concerned with the crystal growth, optical properties, and optical device application of the self-formed quantum dot, which is one of the major current subjects in the semiconductor research field. The atom-like density of states in quantum dots is expected to drastically improve semiconductor laser performance, and to develop new optical devices. However, since the first theoretical prediction for its great possibilities was presented in 1982, due to the difficulty of their fabrication process. Recently, the advent of self-organized quantum dots has made it possible to apply the results in important optical devices, and further progress is expected in the near future. The authors, working for Fujitsu Laboratories, are leading this quantum-dot research field. In this volume, they describe the state of the art in the entire field, with particular emphasis on practical applications.

Quantum Dot Heterostructures

Quantum Dot Heterostructures
Author: Dieter Bimberg,Marius Grundmann,Nikolai N. Ledentsov
Publsiher: John Wiley & Sons
Total Pages: 350
Release: 1999-03-17
Genre: Science
ISBN: 0471973882

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Da die Nachfrage nach immer schnelleren und kleineren Halbleiterbauelementen stetig wächst, sind Quanten-Dots und -Pyramiden rasant in den Mittelpunkt der Halbleiterforschung gerückt. Dieses Buch vermittelt einen umfassenden Überblick über den aktuellen Forschungsstand auf diesem Gebiet. Behandelt werden u.a. Fragen, wie Strukturen aufgebaut, wie sie charakterisiert werden und wie sie die Leistungsfähigkeit der Bauelemente bestimmen. (11/98)

Quantum Dots

Quantum Dots
Author: Michael Shur
Publsiher: World Scientific
Total Pages: 214
Release: 2002
Genre: Science
ISBN: 9789810249182

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In this book, leading experts on quantum dot theory and technology provide comprehensive reviews of all aspects of quantum dot systems. The following topics are covered: (1) energy states in quantum dots, including the effects of strain and many-body effects; (2) self-assembly and self-ordering of quantum dots in semiconductor systems; (3) growth, structures, and optical properties of III-nitride quantum dots; (4) quantum dot lasers.

Quantum Dots

Quantum Dots
Author: Peter A. Ling
Publsiher: Nova Publishers
Total Pages: 278
Release: 2005
Genre: Science
ISBN: 1594544069

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A quantum dot is a particle of matter so small that the addition or removal of an electron changes its properties in some useful way. All atoms are quantum dots, but multi-molecular combinations can have this characteristic. In biochemistry, quantum dots are called redox groups. In nanotechnology, they are called quantum bits or qubits. Quantum dots typically have dimensions measured in nanometers, where one nanometer is 10-9 meter or a millionth of a millimetre. The fields of biology, chemistry, computer science, and electronics are all of interest to researchers in nanotechnology. Other applications of quantum dots include nanomachines, neural networks, and high-density memory or storage media. Research is being carried out on nano-crystals, self-assembled dots, and gated structures. This book presents leading-edge research from around the world.

Quantum Dots

Quantum Dots
Author: Lucjan Jacak,Pawel Hawrylak,Arkadiusz Wojs
Publsiher: Springer Science & Business Media
Total Pages: 176
Release: 2013-06-29
Genre: Technology & Engineering
ISBN: 9783642720024

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We present an overview of the theoretical background and experimental re sults in the rapidly developing field of semiconductor quantum dots - systems 8 6 of dimensions as small as 10- -10- m (quasi-zero-dimensional) that contain a small and controllable number (1-1000) of electrons. The electronic structure of quantum dots, including the energy quan tization of the single-particle states (due to spatial confinement) and the evolution of these (Fock-Darwin) states in an increasing external magnetic field, is described. The properties of many-electron systems confined in a dot are also studied. This includes the separation of the center-of-mass mo tion for the parabolic confining potential (and hence the insensitivity of the transitions under far infrared radiation to the Coulomb interactions and the number of particles - the generalized Kohn theorem) and the effects due to Coulomb interactions (formation of the incompressible magic states at high magnetic fields and their relation to composite jermions), and finally the spin-orbit interactions. In addition, the excitonic properties of quantum dots are discussed, including the energy levels and the spectral function of a single exciton, the relaxation of confined carriers, the metastable states and their effect on the photoluminescence spectrum, the interaction of an exciton with carriers, and exciton condensation. The theoretical part of this work, which is based largely on original re sults obtained by the authors, has been supplemented with descriptions of various methods of creating quantum-dot structures.