This monograph is concerned with the study of nuclear and nucleon structure through the scattering of high energy electrons.
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Electron Scattering for Nuclear & Nucleon Structure
December 15, 2001, Cambridge University Press
Hardcover
in English
- 1st edition
0521780438 9780521780438
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Book Details
First Sentence
"This monograph is concerned with the study of nuclear and nucleon structure through the scattering of high energy electrons."
Table of Contents
Preface
Page ix
Part 1.
Introduction
Page 1
1.
Motivation
Page 3
2.
Pictures of the Nucleus
Page 6
3.
Some Optics
Page 9
4.
Why Electron Scattering?
Page 14
5.
Target Response Surfaces
Page 19
6.
Why Coincidence Experiments?
Page 23
7.
Units and Conventions
Page 26
Part 2.
General Analysis
Page 29
8.
Electromagnetic Interactions
Page 31
9.
Multipole Analysis
Page 34
10.
Dirac Equation
Page 45
11.
Covariant Analysis
Page 51
12.
Excitation of Discrete States in (e, e')
Page 63
13.
Coincidence Experiments (e, e' X)
Page 76
14.
Deep-Inelastic Scattering from the Nucleon
Page 95
15.
Polarization in Deep-Inelastic Scattering
Page 110
16.
Parity Violation in Inclusive Electron Scattering
Page 115
Part 3.
Quantum Electrodynamics
Page 127
17.
Basic Elements
Page 129
18.
Radiative Corrections
Page 139
Part 4.
Selected Examples
Page 145
19.
Basic Nuclear Structure
Page 147
20.
Some Applications
Page 157
21.
A Relativistic Model of the Nucleus
Page 169
22.
Elastic Scattering
Page 182
23.
Quasielastic Scattering
Page 194
24.
The Quark Model
Page 210
25.
Quantum Chromodynamics
Page 221
26.
The Standard Model
Page 231
27.
Parity Violation
Page 247
28.
Excitation of Nucleon Resonances
Page 251
Part 5.
Future Directions
Page 261
29.
TJNAF (CEBAF)
Page 263
30.
Other Facilities
Page 272
31.
Future Directions
Page 278
Appendixes
Page 288
Appendix A.
Long-Wavelength Reduction
Page 288
Appendix B.
Center of Mass (C-M) Motion
Page 294
Appendix C.
Weizsäcker-Williams Approximation
Page 300
Appendix D.
Polarization and Spin-1/2 Fermions
Page 304
Appendix E.
Symmetry Properties of Matrix Elements
Page 308
Appendix F.
Angular Correlations
Page 312
Appendix G.
Relativistic Quasielastic Scattering
Page 317
Appendix H.
Pion Electroproduction
Page 322
Appendix I.
Light-Cone Variables
Page 331
References
Page 337
Index
Page 352
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