This book is an in-depth treatment of the theoretical background relevant to an understanding of materials that can be obtained by using high-energy electron diffraction and microscopy.
This book is an in-depth treatment of the theoretical background relevant to an understanding of materials that can be obtained by using high-energy electron diffraction and microscopy.
1: Basic concepts 2: Kinematic theory 3: Dynamical theory I - general theory 4: Dynamical theory II - THEED 5: Reflection high energy electron diffraction 6: Resonance effects in diffraction 7: Diffuse and inelastic scattering - elementary processes 8: Diffuse and inelastric scattering - multiple scattering effects 9: Crystal and diffraction symmetry 10: Perturbation methods and tensor theory 11: Digital electron microscopy 12: Image formation and the retrieval of the wave function 13: The atomic scattering factor and the optical potential 14: Debye-Waller factors 15: Some useful mathematical relations 16: Green's functions 17: FORTRAN listing of RHEED routines 18: Parameterization of the atomic scattering factor
1: Basic concepts 2: Kinematic theory 3: Dynamical theory I - general theory 4: Dynamical theory II - THEED 5: Reflection high energy electron diffraction 6: Resonance effects in diffraction 7: Diffuse and inelastic scattering - elementary processes 8: Diffuse and inelastric scattering - multiple scattering effects 9: Crystal and diffraction symmetry 10: Perturbation methods and tensor theory 11: Digital electron microscopy 12: Image formation and the retrieval of the wave function 13: The atomic scattering factor and the optical potential 14: Debye-Waller factors 15: Some useful mathematical relations 16: Green's functions 17: FORTRAN listing of RHEED routines 18: Parameterization of the atomic scattering factor
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