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- W19362511 abstract "Secondary electron emission (SEE) from solids, induced by X-rays and charged particles (electrons, ions), is a rather complex process. In a simplified description it can be divided into three independent stages: 1) production of secondary electrons by the primary radiation; 2) transport of secondary electrons in the solid towards the exit surface; 3) escape through the surface. All three stages involve processes which occur inside the solid and thus require, for their exact mathematical representation, the solution of a many-body quantum mechanical problem. Consequently semi-empirical theories and models were developed, which in general explain the main features of the SEE. During the last few years several reviews of SEE have been published1,2,3. It was shown that simple models1 may be used to reproduce the secondary electron yields and other integral characteristics of the process, for nearlyfree-electron metals. For noble and transition metals, semiconductors and insulators the simple semi-empirical models are not as successful. It was also shown2,3 that by using microscopic approaches for the basic interaction processes in the models of SEE they can be improved and may be used to calculate, for example, the energy spectra of the secondary electrons." @default.
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- W19362511 date "1993-01-01" @default.
- W19362511 modified "2023-09-25" @default.
- W19362511 title "Secondary Electron Emission from Alkali Halides Induced by X-Rays and Electrons" @default.
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- W19362511 doi "https://doi.org/10.1007/978-1-4615-2840-1_25" @default.
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