Introduction to the theory of space-charge optics
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Introduction to the theory of space-charge optics

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Published by Macmillan in London .
Written in English

Subjects:

  • Electron optics,
  • Space charge

Book details:

Edition Notes

StatementGyula András Nagy and Miklós Szilágyi ; foreword by Dennis Gabor ; translated by Gy. F. Lászlo and M. Szilágyi.
ContributionsSzilágyi, Miklós, 1936, joint author.
Classifications
LC ClassificationsQC793.5.E622 N3313
The Physical Object
Pagination514 p. :
Number of Pages514
ID Numbers
Open LibraryOL5122174M
ISBN 100333116968
LC Control Number74195708

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Author by: Charles S. Adams Languange: en Publisher by: Oxford University Press, USA Format Available: PDF, ePub, Mobi Total Read: 91 Total Download: File Size: 47,7 Mb Description: This textbook on optics provides an introduction to key concepts of wave optics and light uniquely makes extensive use of Fourier methods and the angular-spectrum approach, especially to. Publisher Summary. This chapter examines the motion of a charged particle of rest mass m 0 and charge Q in an electromagnetic field characterized by the electric and magnetic field vectors E(r, t) and B(r, t), respectively. The derivation of useful trajectory equations for the motion of charged particles—and of all conservation laws satisfied by them—can be performed in a very general and. Theory and Design of Charged Particle Beams Martin Reiser. The Author 4 Linear Beam Optics with Space Charge Theoretical Models of Beams with Space Charge 5 Self-Consistent Theory of Beams Introduction Laminar Beams in Uniform Magnetic Fields About 1% of these are book printing, 1% are paper & paperboard printing, and 1% are notebooks. There are 1, optics books suppliers, mainly located in Asia. Books shelved as optics: Principles of Optics: Electromagnetic Theory of Propagation, Interference and Diffraction of Light by Max Born, Optics by Eugene. Discover new books on Goodreads.

idiom of a body of theory largely deve-loped, more or less untidily, by physicists and metallurgists J. D ESHELBY Optics Introduction to the Theory of Space-Charge Optics A Nagy and M Szilagyi London: Macmillan A pp 51 price4 £11 'Each chapter in this book starts from a general basis - Newton's and Maxwell's equations - and arrives at a Cited by: 2. In this section we will exploit a more complete mathematical description allowing the introduction of concepts of crucial importance in transport theory, such as the Liouville theorem, the beam emittance and the brightness. To make the discussion self-consistent we make a quick review of some pivoting concepts of analytical mechanics. beams, electron optics, powerful microwave devices together with millimeter- and submillimeter-wave devices, charged-particle accelerators, material procession, and free electron lasers. This narrowing of focus has led to considerable progress in the following aspects of theory and engineering. Theory of electromagnetic fields. Principles of Electron Optics: Applied Geometrical Optics, Second Edition gives detailed information about the many optical elements that use the theory presented in Volume 1: electrostatic and magnetic lenses, quadrupoles, cathode-lens-based instruments including the new ultrafast microscopes, low-energy-electron microscopes and photoemission electron microscopes and the mirrors found in.

This set is a reprint of the acclaimed three-volume series, Principles of Electron Optics which represents the first and only comprehensive treatment of electron optics in over forty years. Each volume focuseson different aspects of Electron Optics, but together these three volumes cover systematically the whole of the subject, making this complete set an indispensable resource for anyone. Introduction to Space Charge Effects in Semiconductors This book is the most comprehensive one to describe the basics of space-charge effects in semiconductors, starting from basic principles to advanced application in semiconducting devices. It uses detailed analyses of the transport, Poisson, and continuity equations to demonstrate the. Bridging the gap between the multitude of advanced research articles and the knowledge newcomers to the field are looking for, this is a timely and comprehensive monograph covering the interdisciplinary topic of intramolecular charge transfer (ICT). The book not only covers the fundamentals and physico-chemical background of the ICT process, but also places a special emphasis on the latest. Introduction to Electron and Ion Optics provides the theoretical background needed to understand the subject matter and even be helpful in laboratory works. Seven major parts comprise the book where each focuses on a certain aspect or field.