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Photoemission Studies of High-Temperature Superconductors

Photoemission Studies of High-Temperature Superconductors

Photoemission Studies of High-Temperature Superconductors

David W. Lynch , Iowa State University
Clifford G. Olson , Iowa State University
September 2005
Available
Paperback
9780521019491

    This book describes the current status and results of photoelectron spectroscopic techniques, both theoretical and experimental, that have been applied to the study of the cuprate ("high-temperature") superconductors. The techniques described include angle-resolved photoelectron spectroscopy of valence electrons, core level spectra (XPS), and some special variations, such as resonance photoemission. Attention is paid to the difficulties in interpreting such spectra and to the problems obtaining good sample surfaces and high resolution, comparing results from other experimental techniques as well. The authors also outline expected future developments in the techniques. This book will be of great interest to graduate students and researchers in physics, chemistry and materials science with an interest in high temperature superconductors.

    • First book on 'high-temperature' superconductors using this technique
    • Discusses the problems as well as the strengths and successes of the photoemission technique
    • Measurement techniques and their interpretation are described

    Product details

    February 2011
    Adobe eBook Reader
    9780511839481
    0 pages
    0kg
    154 b/w illus. 1 table
    This ISBN is for an eBook version which is distributed on our behalf by a third party.

    Table of Contents

    • 1. Introduction
    • 2. Structure and electronic structure of cuprates
    • 3. Photoemission - theory
    • 4. Photoemission - experimental
    • 5. Examples
    • 6. Early photoelectron studies of cuprates
    • 7. Bi2212 and other Bi-cuprates
    • 8. Y123 and related compounds
    • 9. NCCO and other cuprates
    • 10. Surface chemistry
    • 11. New techniques in photoelectron spectroscopy
    • 12. Results from selected other techniques.
      Authors
    • David W. Lynch , Iowa State University
    • Clifford G. Olson , Iowa State University