Solid-state spectroscopy : an introduction /

Numerous techniques using electromagnetic radiation or charged neutral particles have been invented and refined to provide more detailed information on solids. This book elucidates topics in this field, including lasers and synchrotrons, Fourier transform spectroscopy, pulsed and magnetic NMR techni...

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Bibliographic Details
Main Author: Kuzmany, H (Hans), 1940-
Format: Book
Language:English
Published: Berlin ; New York : Springer Verlag, c1998
Berlin ; New York : Springer, c1998
New York : [1998], ©1998
New York : c1998
Berlin ; New York : [1998]
Subjects:
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245 1 0 |a Solid-state spectroscopy :  |b an introduction /  |c Hans Kuzmany 
260 |a Berlin ;  |a New York :  |b Springer Verlag,  |c c1998 
260 |a Berlin ;  |a New York :  |b Springer,  |c c1998 
260 |a New York :  |b Springer Verlag,  |c [1998], ©1998 
260 |a New York :  |b Springer Verlag,  |c c1998 
264 1 |a Berlin ;  |a New York :  |b Springer,  |c [1998] 
264 4 |c ©1998 
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500 |a This WorldCat-derived record is shareable under Open Data Commons ODC-BY, with attribution to OCLC  |5 CTY 
504 |a Includes bibliographical references (p. [433]-443) and index 
504 |a Includes bibliographical references (pages [433]-443) and index 
504 |a Includes bibliographical references and index 
505 0 |a 1. Introduction -- 2. Electromagnetic Radiation -- 3. Light Sources with General Application -- 4. Spectral Analysis of Light -- 5. Detection of Electromagnetic Radiation -- 6. The Dielectric Function -- 7. Spectroscopy in the Visible and Near-Visible Spectral Range -- 8. Symmetry and Selection Rules -- 9. Light-Scattering Spectroscopy -- 10. Infrared Spectroscopy -- 11. Magnetic Resonance Spectroscopy -- 12. Ultraviolet and X-Ray Spectroscopy -- 13. Spectroscopy with [gamma] Rays -- 14. Generalized Dielectric Function -- 15. Spectroscopy with Electrons -- 16. Spectroscopy with Positrons and Muons -- 17. Neutron Scattering -- 18. Spectroscopy with Atoms and Ions 
505 0 0 |g 1  |t Introduction --  |g 2.  |t Electromagnetic Radiation --  |g 3.  |t Light Sources with General Application --  |g 4.  |t Spectral Analysis of Light --  |g 5.  |t Detection of Electromagnetic Radiation --  |g 6.  |t Dielectric Function --  |g 7.  |t Spectroscopy in the Visible and Near-Visible Spectral Range --  |g 8.  |t Symmetry and Selection Rules --  |g 9.  |t Light-Scattering Spectroscopy --  |g 10.  |t Infrared Spectroscopy --  |g 11.  |t Magnetic Resonance Spectroscopy --  |g 12.  |t Ultraviolet and X-Ray Spectroscopy --  |g 13.  |t Spectroscopy with [gamma] Rays --  |g 14.  |t Generalized Dielectric Function --  |g 15.  |t Spectroscopy with Electrons --  |g 16.  |t Spectroscopy with Positrons and Muons --  |g 17.  |t Neutron Scattering --  |g 18.  |t Spectroscopy with Atoms and Ions. 
505 0 0 |g 1  |t Introduction --  |g 2.  |t Electromagnetic Radiation --  |g 3.  |t Light Sources with General Application --  |g 4.  |t Spectral Analysis of Light --  |g 5.  |t Detection of Electromagnetic Radiation --  |g 6.  |t The Dielectric Function --  |g 7.  |t Spectroscopy in the Visible and Near-Visible Spectral Range --  |g 8.  |t Symmetry and Selection Rules --  |g 9.  |t Light-Scattering Spectroscopy --  |g 10.  |t Infrared Spectroscopy --  |g 11.  |t Magnetic Resonance Spectroscopy --  |g 12.  |t Ultraviolet and X-Ray Spectroscopy --  |g 13.  |t Spectroscopy with [gamma] Rays --  |g 14.  |t Generalized Dielectric Function --  |g 15.  |t Spectroscopy with Electrons --  |g 16.  |t Spectroscopy with Positrons and Muons --  |g 17.  |t Neutron Scattering --  |g 18.  |t Spectroscopy with Atoms and Ions. 
520 |a Numerous techniques using electromagnetic radiation or charged neutral particles have been invented and refined to provide more detailed information on solids. This book elucidates topics in this field, including lasers and synchrotrons, Fourier transform spectroscopy, pulsed and magnetic NMR techniques, and photo-emission and light and electron scattering. Each chapter includes problems and examples. 235 illus 
520 |a Spectroscopic methods have opened up a new horizon in our knweledge about solid-state materials. Numerous techniques using electromagnetic radiation or charged and neutral particles have been invented and worked out to a high level in order to provide more detailed information on the solids. In this text, new radiation sources like lasers and synchrotrons are discussed. It prvides a description of the linear response together with the basic principles and the technical background for various scattering experiments. Fourier transform spectroscopy, pulsed and magnetic NMR tecniques, photo-emission, and light and electron scattering are elucidated. Each chapter includes problems. The concept of this textbook is designed for graduate students 
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