Electron Impact Ionization

Electron Impact Ionization
Author: T.D. Märk,G.H. Dunn
Publsiher: Springer Science & Business Media
Total Pages: 395
Release: 2013-06-29
Genre: Science
ISBN: 9783709140284

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It is perhaps surprising that a process which was one of the first to be studied on an atomic scale, and a process which first received attention over seven decades ago, continues to be the object of diverse and intense research efforts. Such is the case with the (seemingly) conceptually simple and familiar mechanism of electron impact ionization of atoms, molecules, and ions. Not only has the multi-body nature of the collision given ground to theoretical effort only grudgingly, but also the variety and subtlety of processes contributing to ionization have helped insure that progress has come only with commensurate work: no pain - no gain. Modern experimental methods have made it possible to effectively measure and explore threshold laws, differential cross sections, partial cross sections, inner-shell ionization, and the ionization of unstable species such as radicals and ions. In most instances the availability of experimental data has provided impetus and guidance for further theoretical progress.

Electron Impact Phenomena

Electron Impact Phenomena
Author: F. H. Field,J. L. Franklin
Publsiher: Academic Press
Total Pages: 577
Release: 2013-10-22
Genre: Science
ISBN: 9781483275697

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Electron Impact Phenomena and the Properties of Gaseous Ions, Revised Edition deals with data pertaining to electron impact and to molecular gaseous ionic phenomena. This book discusses electron impact phenomena in gases at low pressure that involve low-energy electrons, which result in ion formation. The text also describes the use of mass spectrometers in electron impact studies and the degree of accuracy obtained when measuring electron impact energies. This book also reviews relatively low speed electrons and the transitions that result in the ionization of the atomic system. This text then discusses diatomic molecules whose mass spectra can be interpreted using the Franck-Condon principle. This selection also presents some examples of ions in solution that resemble the gaseous ions formed by electron impacts. The energies of these gaseous ions can be the key to understanding the mechanisms of ionic reactions. These examples include the olefin addition reactions and catalytic cracking. This text will prove invaluable for research chemists, students, and professors in chemistry and related fields such as organic chemistry and electrochemistry.

Electron Ionization

Electron Ionization
Author: Tilmann D. Märk
Publsiher: BoD – Books on Demand
Total Pages: 398
Release: 2010
Genre: Collisions (Nuclear physics)
ISBN: 9783902719577

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Ion Production by Electron Impact

Ion Production by Electron Impact
Author: Rowland Ivor Reed
Publsiher: Unknown
Total Pages: 266
Release: 1962
Genre: Science
ISBN: UOM:39015078646810

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Mass Spectrometry

Mass Spectrometry
Author: Jürgen H Gross
Publsiher: Springer Science & Business Media
Total Pages: 534
Release: 2006-04-05
Genre: Science
ISBN: 9783540407393

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Mass Spectrometry is an ideal textbook for students and professionals as well as newcomers to the field. Starting from the very first principles of gas-phase ion chemistry and isotopic properties, the textbook takes the reader through the design of mass analyzers and ionization methods all the way to mass spectral interpretation and coupling techniques. Step-by-step, the reader learns how mass spectrometry works and what it can do. The book comprises a balanced mixture of practice-oriented information and theoretical background. It features a clear layout and a wealth of high-quality figures. Exercises and solutions are located on the Springer Global Web.

Theory of Ionization of Atoms by Electron Impact

Theory of Ionization of Atoms by Electron Impact
Author: Raimonds K. Peterkop
Publsiher: Unknown
Total Pages: 263
Release: 1977
Genre: Electronic Book
ISBN: OCLC:468392449

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Electron and Photon Impact Ionization and Related Topics 2004

Electron and Photon Impact Ionization and Related Topics 2004
Author: B Piraux
Publsiher: CRC Press
Total Pages: 218
Release: 2005-02-01
Genre: Science
ISBN: 075031009X

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Electron and Photon Impact Ionization and Related Topics 2004 provides an overview of the latest advances in the field of ionization by electron and photon impact. The book contains 18 contributions of recent experimental, theoretical, and computational work on correlated processes that involve a wide range of targets, including atoms, molecules, clusters, and surfaces. It covers a broad range of current topics, such as multi-particle coincidence studies, in particular, (e,2e) and (e,3e) processes, photoionization with or without excitation, and multiphoton single and double ionization. Three chapters contain the following topics: anisotropy and polarization in Auger-electron emission, multiple ionization of atoms in strong fields, and theoretical and practical aspects of photoionization with excitation. Because of the extensive array of applications discussed, this book is an essential reference for chemists, biologists, and researchers working in atomic, molecular, cluster, and surface physics.

Coincidence Studies of Electron and Photon Impact Ionization

Coincidence Studies of Electron and Photon Impact Ionization
Author: C.T. Whelan,H.R.J. Walters
Publsiher: Springer Science & Business Media
Total Pages: 308
Release: 2013-06-29
Genre: Science
ISBN: 9781475797510

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The great advantage of coincidence measurements is that by suitable choice of the kinematical and geometrical arrangement one may probe delicate physical effects which would be swamped in less differential experiments. The measurement of the triple dif ferential and higher-order cross sections presents enormous technical difficulties, but refined experiments of this type provide an insight into the subtleties of the scattering process and offer a welcome, if severe, test of the available theoretical models. The last few years have been an exciting time to work in the field and much has been learned. Profound insights have been gleaned into the basic Coulomb few body problem in atomic physics: the experimental study of the fundamental (e,2e) processes on hydrogen and helium targets continues to add to our knowledge and indeed to challenge the best of our theoretical models; significant advances have been made in the understanding of the "double excitation problem," that is the study of ionization processes with two active target electrons: important measurements of (e,3e), (,),,2e), excitation-ionization and excitation autoionization have been reported and strides have been made in their theoretical description; the longstanding discrepancies between theory and experiment for relativistic (e,2e) processes were resolved, spin dependent effects predicted and ob served and the first successful coincidence experiments on surfaces and thin films were announced. Theory and experiment have advanced in close consort. The papers pre sented here cover the whole gambit of research in the field. Much has been achieved but much remains to be done.