Topics in Applied Physics Ser.: Single Quantum Dots : Fundamentals, Applications and New Concepts by Peter Michler (2003, Hardcover)

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Über dieses Produkt

Product Identifiers

PublisherSpringer Berlin / Heidelberg
ISBN-103540140220
ISBN-139783540140221
eBay Product ID (ePID)5985513

Product Key Features

Number of PagesXii, 352 Pages
Publication NameSingle Quantum Dots : Fundamentals, Applications and New concepts
LanguageEnglish
SubjectLasers & Photonics, Physics / Quantum Theory, Physics / Optics & Light, Electronics / General
Publication Year2003
TypeTextbook
Subject AreaTechnology & Engineering, Science
AuthorPeter Michler
SeriesTopics in Applied Physics Ser.
FormatHardcover

Dimensions

Item Weight54.3 Oz
Item Length9.3 in
Item Width6.1 in

Additional Product Features

Intended AudienceScholarly & Professional
LCCN2003-066675
Dewey Edition22
Series Volume Number90
Number of Volumes1 vol.
IllustratedYes
Dewey Decimal621.3815/2
Table Of ContentEpitaxial Growth and Electronic Structure of Self-Assembled Quantum Dots.- Electronic Properties of Self-Assembled Quantum Dots.- Exciton Complexes in Self-Assembled In(Ga)As/GaAs Quantum Dots.- Optical Spectroscopy of Epitaxially Grown II-VI Single Quantum Dots.- Quantum-Dot Lasers.- Dephasing Processes and Carrier Dynamics in (In,Ga)As Quantum Dots.- Solid-State Cavity-Quantum Electrodynamics with Self-Assembled Quantum Dots.- Nonclassical Light from Single Semiconductor Quantum Dots.- Subject Index.
SynopsisThis book reviews recent advances in the exciting and rapid growing field of semiconductor quantum dots by contributions from some of the most prominent researchers in the field. Special focus is given to the optical and electronic properties of single quantum dots due to their potential applications in devices operating with single electrons and/or single photons. This includes quantum dots in electric and magnetic fields, cavity-quantum electrodynamics, nonclassical light generation, and coherent optical control of excitons. Single Quantum Dots also addresses various growth techniques as well as potential device applications such as quantum dot lasers, ultra-fast amplifiers, and new concepts like quantum computing using quantum dots.
LC Classification NumberQC685-689.55
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