Geometrical Charged-Particle Optics

(Autor)

Buch | Hardcover
XVI, 414 Seiten
2008 | 1., 2009
Springer Berlin (Verlag)
978-3-540-85915-4 (ISBN)

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Geometrical Charged-Particle Optics - Harald Rose
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This resource covering all theoretical aspects of modern geometrical charged-particle optics is aimed at anyone involved in the design of electron optical instruments and beam-guiding systems for charged particles.

The book covers all theoretical aspects of modern geometrical charged particle optics. It is intended as a textbook for graduate student and as a guide for researchers, who are involved in the design of electron optical instruments and beam-guiding systems for charged particles. Procedures for calculating the properties of systems with arbitrarily curved axis are outlined in detail and methods are discussed for designing and optimizing special components such as aberration corrector, spectrometers, energy filters, monochromator, ion traps, electron mirrors and cathodes. The design of novel electron optical components enabling sub-Angstroem spatial resolution and sub-0.1eV energy resolution are discussed. Relativistic motion and spin precession of the electron is treated in a concise way by employing a covariant five-dimensional procedure.

Harald H. Rose is an emeritus Professor of the Technical University Darmstadt, Germany. He received his Ph.D. degree in 1964 from this University with a thesis on theoretical electron optics under the supervision of Professor Otto Scherzer. From 1976-1980 he was a Principal Research Scientist at The New York State Department of Health and spend sabbaticals in 1973/74 at the E. Fermi Institute, Universiy of Chicago and 1995/96 at Cornell and at the University of Maryland. From 1980-2000 he was Professor at the Department of Physics of the University of Darmstadt, After his retirement he was a Research Fellow at the Department of Materials Science, Oak Ridge National Laboratory (2000/1), Department of Materials Science, Argonne National Laboratory (2001/2), and at the Advanced Light Source, Lawrence Berkeley National Laboratory (2003-2005). His main research activities are in theoretical electron optics, especially aberration correction, theory of electron scattering and image formation in EM. He has published more than 200 reviewed articles in scientific journals, 10 major review articles and is inventor of 105 patents on scientific instruments and electron optical components partly manufactured by various companies. Honorary membership in scientific societies: Honorary member of the Microscopy Society of America, the German Society of Electron Microscopy, and of the 141 Committee of the Japanese Society for the Promotion of Sciences. Awards: Distinguished Scientist Award 2003 of the Microscopy Society of America, Honorary Professor of the Jiaotong University, Xian, China (since 1987), 2005 Award of the 141 Committee of the Japanese Society for the Promotion of Sciences, Karl Heinz Beckurts Award 2006 together with Dr. Maximilian Haider and Professor Knut Urban.

1. Introduction.- 2. General Properties of the Electron.- 3. Multipole Expansion of the Electromagnetic Field .- 4. Gaussian Optics.- 5. General Principles of Particle Motion.- 6. Beam Properties.- 7. Path Deviations.- 8. Aberrations.- 9. Correction of Aberrations.- 10. Electron Mirrors.- 11. Optics of Electron Guns.- 12.Confinement of Charged Particles.- 13. Monochromator and Energy Filters.- 14. Relativistic Electron Motion and Spin Precession.

Reihe/Serie Springer Series in Optical Sciences ; 142
Sprache englisch
Maße 155 x 235 mm
Gewicht 885 g
Einbandart gebunden
Themenwelt Naturwissenschaften Physik / Astronomie Atom- / Kern- / Molekularphysik
Schlagworte Aberration correctors • Electron optics • Energy filter • Relativistic electron motion • Spin precession
ISBN-10 3-540-85915-2 / 3540859152
ISBN-13 978-3-540-85915-4 / 9783540859154
Zustand Neuware
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