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The spectroscopy of semiconductors /

Spectroscopic techniques are among the most powerful characterization methods used to study semiconductors. This volume presents reviews of a number of major spectroscopic techniques used to investigate bulk and artificially structured semiconductors including: photoluminescence, photo-reflectance,...

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Bibliographic Details
Call Number:Libro Electrónico
Other Authors: Seiler, David G., Littler, C. L.
Format: Electronic eBook
Language:Inglés
Published: Boston : Academic Press, �1992.
Series:Semiconductors and semimetals ; v. 36.
Subjects:
Online Access:Texto completo
Texto completo
Table of Contents:
  • Front Cover; The Spectroscopy of Semiconductors; Copyright Page; Contents; List of Contributors; Preface; Chapter 1. Laser Spectroscopy of Semiconductors at Low Temperatures and High Magnetic Fields; I. Introduction; II. Experimental Techniques; III. GaAs Quantum Well Structures; IV. Magnetic Semiconductors; Acknowledgments; References; Chapter 2. Transient Spectroscopy by Ultrashort Laser Pulse Techniques; I. Introduction; II. Instrumentation for Time-Resolved Spectroscopy; III. Time-Resolved Spectroscopy in Semiconductors: Approaches.
  • IV. Portfolio of Experimental Examples in Time-Resolved SpectroscopyV. Concluding Remarks; References; Chapter 3. Piezospectroscopy of Semiconductors; I. Introduction; II. Elasticity, Symmetry, Latent Anisotropy, and Deformation Potentials.; III. Experimental Techniques; IV. Valence and Conduction Bands of Elemental and Compound Semiconductors under External Stress; V. Interband Transitions and Associated Excitons; VI. Lyman Spectra of Shallow Donors and Acceptors; VII. Zone-Center Optical Phonons; VIII. Optical Phonons and Electronic States; IX. Concluding Remarks; Acknowledgments.