Self-Trapped Excitons
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Author
Contributions
- Williams, Richard T. - Contributor
Publication
1993 - Springer Berlin Heidelberg, Berlin, Heidelberg, Germany
Language
English
Word Count
101,000 words, Guess
Page Count
404 pages
Physical Format
[electronic resource] /
Identifiers
- Open LibraryOL27087007M
- ISBN-139783642974342
- ISBN-103642974341
- OCLC Control Number851377638
- OCLC Control Numberselftrappedexcit00song
Classifications
- DDC530.41
- LCCQC173.45-173.458
Description
In crystals as diverse as sodium chloride, silicon dioxide, sold xenon, pyrene, arsenic triselenide, and silver chloride, the fundamental electronicexcitation (exciton) is localized within its own lattice distortion field very shortly after its creation. This book discusses the structure if the self-trapped exciton (STE) and its evolution along the path of its return to the ground state or to a defect state of crytal. A comprehensive review of experiments on STEs in a wide range of materials has been assembled, including extensive tables of data. Throughout, emphasisis given to the basic physics underlying various manifestations of self-trapping. The role of the spontaneous symmetry-breaking or "off-center"relaxation in STE structure is examined thoroughly, and leads naturally to the subject of lattice defect formation as a product of STE relaxation. The theory of STEs is developed from a localized, atomistic perspective using self-consistent methods adapted from the theory of defects in solids. At this time of rapid progress in STEs, researchers will welcome the first monograph dedicaded solely to this topic.
Subjects
Series Statement
- Springer Series in Solid-State Sciences -- 105
Other Editions
- Self-Trapped Excitons
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