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Advances in Imaging and Electron Physics, Volume 183 by Peter W. Hawkes PDF

By Peter W. Hawkes

ISBN-10: 0128002654

ISBN-13: 9780128002650

Advances in Imaging & Electron Physics merges long-running serials-Advances in Electronics & Electron Physics and Advances in Optical & Electron Microscopy. The sequence positive aspects prolonged articles at the physics of electron units (especially semiconductor devices), particle optics at low and high energies, microlithography, photo technological know-how and electronic photograph processing, electromagnetic wave propagation, electron microscopy, and the computing tools utilized in most of these domains.

  • Contributions from prime specialists
  • Informs and updates on all of the most up-to-date advancements within the field

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T. (2010). Importance of surface conditions for spacecraft charging. Journal of Spacecraft Rockets, 47, 634–638. , & Joy, D. C. (2005). A new examination of secondary electron yield data. Surface and Interface Analysis, 37, 895–900. Li, Y. , Mao, S. , & Ding, Z. J. (2011). Monte Carlo Simulation of SEM and SAM Images, Chapter 11, in Applications of Monte Carlo Method in Science and Engineering. ). com/books/applications-of-monte-carlo-methodin-science-and-engineering/monte-carlo-simulation-of-sem-and-sam-images.

Even when this route is used, there is still a limit on the size of the interaction volume of the incident electrons, with the solid under investigation being mostly in the area of 100 nm at say 5keV for most elements and this volume increases with increased energy of the incident 28 Mohamed M. El-Gomati and Christopher G. H. Walker electrons. This is because of the need to have an adequate X-ray signal level and signal-to-noise ratio. This in turn sets a low limit on the size of the features that can be analyzed in the SEM using X-rays.

Baroody, E. M. (1950). A theory of secondary electron emission from metals. Physical Review, 78, 780–787. Bauer, E. (1994). Low-energy electron microscopy. Reports on Progress in Physics, 57, 895–938. Bethe, H. (1930). Zur theorie des Durchgangs schneller Korpuscularstrahlen durch Materie (Theory of the passage of fast particle beams through matter). Annals of Physics, 5, 325–349. Bonet, C. (2009). Personal communication. Bosch, E. (2013). Personal communication. Bronshtein, I. , & Fraiman, B. S.

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Advances in Imaging and Electron Physics, Volume 183 by Peter W. Hawkes


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