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A 2004 introduction to RHEED for beginners plus detailed experimental and theoretical treatments for experts.
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A 2004 introduction to RHEED for beginners plus detailed experimental and theoretical treatments for experts.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 366
- Erscheinungstermin: 16. Februar 2016
- Englisch
- Abmessung: 250mm x 175mm x 24mm
- Gewicht: 810g
- ISBN-13: 9780521453738
- ISBN-10: 0521453739
- Artikelnr.: 22296792
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Cambridge University Press
- Seitenzahl: 366
- Erscheinungstermin: 16. Februar 2016
- Englisch
- Abmessung: 250mm x 175mm x 24mm
- Gewicht: 810g
- ISBN-13: 9780521453738
- ISBN-10: 0521453739
- Artikelnr.: 22296792
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Preface
1. Introduction
2. Historical survey
3. Instrumentation
4. Wave properties of electrons
5. The diffraction conditions
6. Geometrical features of the patterns
7. Kikuchi and resonance patterns
8. Real diffraction patterns
9. Electron scattering by atoms
10. Kinematic electron diffraction
11. Fourier components of the crystal potential
12. Dynamical theory: transfer matrix method
13. Dynamical theory: embedded R-matrix method
14. Dynamical theory: integral method
15. Structural analysis of crystal surfaces
16. Inelastic scattering in a crystal
17. Weakly disordered surfaces
18. Strongly disordered surfaces
19. RHEED intensity oscillations
Appendix A. Fourier representations
Appendix B. Green's function
Appendix C. Kirchhoff's diffraction theory
Appendix D. A simpler Eigenvalue problem
Appendix E. Waller and Hartree equation
Appendix F. Optimization of dynamical calculation
Appendix G. Scattering factor
References
Index
1. Introduction
2. Historical survey
3. Instrumentation
4. Wave properties of electrons
5. The diffraction conditions
6. Geometrical features of the patterns
7. Kikuchi and resonance patterns
8. Real diffraction patterns
9. Electron scattering by atoms
10. Kinematic electron diffraction
11. Fourier components of the crystal potential
12. Dynamical theory: transfer matrix method
13. Dynamical theory: embedded R-matrix method
14. Dynamical theory: integral method
15. Structural analysis of crystal surfaces
16. Inelastic scattering in a crystal
17. Weakly disordered surfaces
18. Strongly disordered surfaces
19. RHEED intensity oscillations
Appendix A. Fourier representations
Appendix B. Green's function
Appendix C. Kirchhoff's diffraction theory
Appendix D. A simpler Eigenvalue problem
Appendix E. Waller and Hartree equation
Appendix F. Optimization of dynamical calculation
Appendix G. Scattering factor
References
Index
Preface
1. Introduction
2. Historical survey
3. Instrumentation
4. Wave properties of electrons
5. The diffraction conditions
6. Geometrical features of the patterns
7. Kikuchi and resonance patterns
8. Real diffraction patterns
9. Electron scattering by atoms
10. Kinematic electron diffraction
11. Fourier components of the crystal potential
12. Dynamical theory: transfer matrix method
13. Dynamical theory: embedded R-matrix method
14. Dynamical theory: integral method
15. Structural analysis of crystal surfaces
16. Inelastic scattering in a crystal
17. Weakly disordered surfaces
18. Strongly disordered surfaces
19. RHEED intensity oscillations
Appendix A. Fourier representations
Appendix B. Green's function
Appendix C. Kirchhoff's diffraction theory
Appendix D. A simpler Eigenvalue problem
Appendix E. Waller and Hartree equation
Appendix F. Optimization of dynamical calculation
Appendix G. Scattering factor
References
Index
1. Introduction
2. Historical survey
3. Instrumentation
4. Wave properties of electrons
5. The diffraction conditions
6. Geometrical features of the patterns
7. Kikuchi and resonance patterns
8. Real diffraction patterns
9. Electron scattering by atoms
10. Kinematic electron diffraction
11. Fourier components of the crystal potential
12. Dynamical theory: transfer matrix method
13. Dynamical theory: embedded R-matrix method
14. Dynamical theory: integral method
15. Structural analysis of crystal surfaces
16. Inelastic scattering in a crystal
17. Weakly disordered surfaces
18. Strongly disordered surfaces
19. RHEED intensity oscillations
Appendix A. Fourier representations
Appendix B. Green's function
Appendix C. Kirchhoff's diffraction theory
Appendix D. A simpler Eigenvalue problem
Appendix E. Waller and Hartree equation
Appendix F. Optimization of dynamical calculation
Appendix G. Scattering factor
References
Index







