Transmission Electron Microscopy: Physics of Image Formation

Transmission Electron Microscopy: Physics of Image Formation
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Ludwig Reimer
904 g
236x154x35 mm
36, Springer Optical Sciences

Dr. Helmut Kohl, geboren 1930 in Ludwigshafen am Rhein, ist seit 1947 Mitglied der CDU. 1959 wurde er Mitglied des Landtages von Rheinland-Pfalz und war. von 1969 bis 1976 Ministerpräsident des Landes Rheinland-Pfalz. Von 1973 bis zum 7. November 1998 war er Bundesvorsitzender der CDU. Er war Mitglied des Deutschen Bundestages von 1976 bis 2002, von Dezember 1976 bis Oktober 1982 Oppositionsführer als Vorsitzender der CDU/CSU-Bundestagsfraktion. Vom 1. Oktober 1982 bis 27. Oktober 1998 war Helmut Kohl Bundeskanzler der Bundesrepublik Deutschland.
The aim of this monograph is to outline the physics of image formation, electron-specimen interactions, and image interpretation in transmission el- tron microscopy. Since the last edition, transmission electron microscopy has undergone a rapid evolution. The introduction of monochromators and - proved energy ?lters has allowed electron energy-loss spectra with an energy resolution down to about 0.1 eV to be obtained, and aberration correctors are now available that push the point-to-point resolution limit down below 0.1 nm. After the untimely death of Ludwig Reimer, Dr. Koelsch from Springer- Verlag asked me if I would be willing to prepare a new edition of the book. As it had served me as a reference for more than 20 years, I agreed without hesitation. Distinct from more specialized books on speci?c topics and from books intended for classroom teaching, the Reimer book starts with the basic principles and gives a broad survey of the state-of-the-art methods, comp- mented by a list of references to allow the reader to ?nd further details in the literature. The main objective of this revised edition was therefore to include the new developments but leave the character of the book intact. The presentation of the material follows the format of the previous e- tion as outlined in the preface to that volume, which immediately follows. A few derivations have been modi?ed to correspond more closely to modern textbooks on quantum mechanics, scattering theory, or solid state physics.
This text, the standard of the field, includes an overview of such topics as the theory of image and contrast formation as well as discussion of recent progress in the field, especially in the areas of aberration corrector and energy filtering.
This classic monograph again available in a revised and updated version by the author's successor.
Particle Optics of Electrons.- Wave Optics of Electrons.- Elements of a Transmission Electron Microscope.- Electron-Specimen Interactions..- Scattering and Phase Contrast.- Theory of Electron Diffraction.- Electron-Diffraction Modesand Applications ..- Imaging of Crystalline Specimens and Their Defects..- Elemental Analysis by X-ray and Electron Energy-Loss Spectroscopy..- Specimen Damage by Electron Irradiation.

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