2D infrared (IR) spectroscopy is a cutting-edge technique, with applications in subjects as diverse as the energy sciences, biophysics and physical chemistry. This book introduces the essential concepts of 2D IR spectroscopy step-by-step to build an intuitive and in-depth understanding of the method
Particle Induced Electron Emission II
β Scribed by D. Hasselkamp (auth.), Dr. Dietmar Hasselkamp, Dr. Hermann Rothard, Professor Dr. Karl-Ontjes Groeneveld, Dr. JΓΌrgen Kemmler, Dr. Peter Varga, Professor Dr. Hannspeter Winter (eds.)
- Publisher
- Springer Berlin Heidelberg
- Year
- 1992
- Tongue
- English
- Leaves
- 231
- Series
- Springer Tracts in Modern Physics 123
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Electron emission is a fundamental phenomenon which accompanies most interactions of energetic particles with solid surfaces. Not only is it a special effect which for almost ninety years has attracted the interest of physicists, but it is also of acute importance in such fields as radiation effects and transport phenomena in solids (e.g., radiation biology), plasma-surface interactions, microtechnology, surface analysis, ion microscopies, particle detector development and others. While Volume I emphasizes the theoretical description of the mechanisms of electron emission, this volume reviews modern experimental trends and aspects of the phenomenon, e.g., kinetic electron emission from massive solids and from thin foils under bombardment with positive, negative, and neutral particles, and the measurement of electron statistics in connection with potential and kinetic emission due to slow singly and multiply charged projectiles.
β¦ Table of Contents
Kinetic electron emission from solid surfaces under ion bombardment....Pages 1-95
Kinetic electron emission from ion penetration of thin foils in relation to the pre-equilibrium of charge distributions....Pages 97-147
Slow particle-induced electron emission from solid surfaces....Pages 149-214
β¦ Subjects
Solid State Physics and Spectroscopy; Surfaces and Interfaces, Thin Films
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