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Superlattices and Other Heterostructures Symmetry and Optical Phenomena by Eougenious L. Ivchenko

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Published by Springer Berlin Heidelberg in Berlin, Heidelberg .
Written in English

Subjects:

  • Electronics,
  • Optical materials

Book details:

About the Edition

Superlattices and Other Heterostructures deals with the optical properties of superlattices and quantum well structures with emphasis on phenomena governed by crystal symmetries. After a brief introduction to group theory and symmetries, methods for calculating spectra of electrons, excitons, and phonons in heterostructures are discussed. Further chapters cover absorption and reflection of light under interband transitions, cyclotron and electron spin-resonance, light scattering by free and bound carriers as well as by optical and acoustic phonons, polarized photoluminescence, optical spin orientation of electrons and excitons, and nonlinear optical and photogalvanic effects.

Edition Notes

Statementby Eougenious L. Ivchenko, Grigory Pikus
SeriesSpringer Series in Solid-State Sciences -- 110, Springer Series in Solid-State Sciences -- 110
ContributionsPikus, Grigory
Classifications
LC ClassificationsTA1750-1750.22
The Physical Object
Format[electronic resource] :
Pagination1 online resource (xi, 370p. 85 illus.)
Number of Pages370
ID Numbers
Open LibraryOL27090163M
ISBN 103642975917, 3642975895
ISBN 109783642975912, 9783642975899
OCLC/WorldCa851384170

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About this book Superlattices and Other Heterostructures deals with optical properties of superlattices and quantum-well structures with emphasis on phenomena governed by crystal symmetries. After a brief introduction to group theory and symmetries, methods to calculate spectra of electrons, excitions and phonons in heterostructures are discussed. Superlattices and Other Heterostructures Symmetry and Optical Phenomena. Authors: Ivchenko, Eougenious L., Pikus, Grigory.   Overview Superlattices and Other Heterostructures deals with optical properties of superlattices and quantum-well structures with emphasis on phenomena governed by crystal symmetries. After a brief introduction to group theory and symmetries, methods to calculate spectra of electrons, excitions and phonons in heterostructures are : About this book Introduction Superlattices and Other Heterostructures deals with optical properties of superlattices and quantum-well structures with emphasis on .

Superlattices and Other Heterostructures Symmetry and Optical Phenomena. Authors (view affiliations) Part of the Springer Series in Solid-State Sciences book series (SSSOL, volume ) Log in to check access. Buy eBook. USD Instant download Vibrational Spectra of Crystals and Superlattices Electron-Phonon Interaction. Eougenious L. Superlattices and Microstructures is a journal disseminating the science and technology of synthetic heterostructures, including individual and collective use of semiconductors, metals and insulators for the exploitation of their unique properties. The journal hosts papers dealing with fundamental and. Both experimental and theoretical articles will be published in this Special Issue, focusing on the state-of-the-art of recent research on 2D materials, van der Waals heterostructures and 2D superlattices, with a special focus on phenomena such as interlayer excitons and twistronics. Bandgap modulation is indeed an important reason to grow heterostructures and superlattices but it isn't the only reason to do so. Strain engineering could be another, and there are several others.

Superlattices and Microstructures is a journal devoted to the dissemination of the science and technology of synthetic heterostructures, including individual and collective use of semiconductors, metals and insulators for the exploitation of their unique properties.. Types of paper Types of contributions: Original research papers, review articles, letters to the editors.   This book covers the various material properties of bulk GaAs and related materials, and aspects of the physics of artificial semiconductor microstructures, such as quantum wells and superlattices, made of these materials. A complete set of the material properties are considered in this book. Dealing with optical properties of superlattices and quantum-well structures, this text emphasizes the phenomena governed by crystal symmetries. After an introduction to group theory and symmetries, methods to calculate spectra of electrons, excitions and phonons in heterostructures are discussed. Superlattices, man-made periodic structures with period much larger than the unit cell dimensions of solids, were introduced for novel electronic properties such as negative differential conductance, NDC, the backbone of all amplifiers and oscillators. Such a periodic structure was originally conceived by using doping as well as heterojunctions.