Optical Orientation
Elsevier (Publisher)
Published in November 1984
Book
Hardback
536 pages
978-0-444-86741-4 (ISBN)
Article exhausted; check different version
Description
This book comprises the first systematic exposition of various physical aspects of the orientation of electron and nuclear spins in semiconductors by optical means.
This book comprises the first systematic exposition of various physical aspects of the orientation of electron and nuclear spins in semiconductors by optical means.
This book comprises the first systematic exposition of various physical aspects of the orientation of electron and nuclear spins in semiconductors by optical means.
More details
Series
Language
English
Place of publication
Oxford
United Kingdom
Publishing group
Elsevier Science & Technology
Target group
College/higher education
Professional and scholarly
Illustrations
Illustrations
Dimensions
Height: 230 mm
Width: 150 mm
ISBN-13
978-0-444-86741-4 (9780444867414)
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Additional editions

F. Meier | B. P. Zakharchenya
Optical Orientation
E-Book
12/2012
Elsevier
€70.95
Available for download
Content
Preface. 1. Major physical phenomena in the optical orientation and alignment in semiconductors (V.I. Perel and B.P. Zakharchenya). 2. Theory of optical spin orientation of electrons and nuclei in semiconductors (M.I. Dyakonov and V.I. Perel). 3. Spin relaxation under optical orientation in semiconductors (G.E. Pikus and A.N. Titkov). 4. Optical alignment of electron momenta in GaAs-type semiconductors (D.N. Mirlin). 5. Optical orientation of the coupled electron-nuclear spin system of a semiconductor (V.G. Fleisher and I.A. Merkulov). 6. Applications of polarized electron sources utilizing optical orientation in solids (D.T. Pierce and R.J. Celotta). 7. Spin polarized photoemission by optical orientation (F. Meier and D. Pescia). 8. Optical orientation of excitons (R. Planel and C. Benoit a la Guillaume). 9. Optical investigation of the hyperfine coupling between electronic and nuclear spins (D. Paget and V.L. Berkovits). 10. Spin-polarized photoelectrons and crystal symmetry (M. Wohlecke and G. Borstel). 11. Optical detection of conduction electron spin resonance in semi-conductors and its application to k.p perturbation theory (C. Hermann and C. Weisbuch). Author index. Subject index.