2011, ISBN: 9783642154386
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Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics : Doctoral Thesis Accepted by Imperial College, London, Uk - encuadernado, tapa blanda
2011, ISBN: 3642154387
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The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses) - encuadernado, tapa blanda
2011, ISBN: 9783642154386
Springer, 2011-01-10. 2011. Hardcover. Used:Good., Springer, 2011-01-10, 0
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ISBN: 9783642154386
Springer . Hardback. New. pp. 320, Springer, 6
Biblio.co.uk |
2011, ISBN: 9783642154386
2011 Neubindung, Buchschnitt leicht verkürzt, Buchrücken leicht angestoßen 8638713/12 Versandkostenfreie Lieferung Quantum-classical simulation,Electronic damping,Radiation damage in meta… Más…
ISBN: 9783642154386
Springer . Hardback. New. pp. 320, Springer, 6
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Detalles del libro - The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics Christopher Race Author
EAN (ISBN-13): 9783642154386
ISBN (ISBN-10): 3642154387
Tapa dura
Año de publicación: 2011
Editorial: Springer Berlin Heidelberg Core >2 >T
303 Páginas
Peso: 0,653 kg
Idioma: eng/Englisch
Libro en la base de datos desde 2008-05-29T10:53:22+02:00 (Madrid)
Página de detalles modificada por última vez el 2023-06-17T15:17:00+02:00 (Madrid)
ISBN/EAN: 9783642154386
ISBN - escritura alterna:
3-642-15438-7, 978-3-642-15438-6
Mode alterno de escritura y términos de búsqueda relacionados:
Autor del libro: ehrenfest
Título del libro: ehre, metals, modelling damage, modelling the, the dynamics, springer theses
Datos del la editorial
Autor: Christopher Race
Título: Springer Theses; The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics
Editorial: Springer; Springer Berlin
303 Páginas
Año de publicación: 2011-01-07
Berlin; Heidelberg; DE
Impreso en
Idioma: Inglés
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XVI, 303 p.
BB; Hardcover, Softcover / Physik, Astronomie/Atomphysik, Kernphysik; Physik der kondensierten Materie (Flüssigkeits- und Festkörperphysik); Verstehen; Ehrenfest dynamics; Electronic damping; Electronic excitations; Electronic forces; Electronic friction; Non-adiabatic effects; Quantum-classical simulation; Radiation damage in metals; Condensed Matter Physics; Theoretical, Mathematical and Computational Physics; Mathematische Physik; EA; BC
Atomistic simulations of metals under irradiation are indispensable for understanding damage processes at time- and length-scales beyond the reach of experiment. Previously, such simulations have largely ignored the effect of electronic excitations on the atomic dynamics, even though energy exchange between atoms and electrons can have significant effects on the extent and nature of radiation damage. This thesis presents the results of time-dependent tight-binding simulations of radiation damage, in which the evolution of a coupled system of energetic classical ions and quantum mechanical electrons is correctly described. The effects of electronic excitations in collision cascades and ion channelling are explored and a new model is presented, which makes possible the accurate reproduction of non-adiabatic electronic forces in large-scale classical molecular dynamics simulations of metals.Opens up a new chapter in the simulation of irradiation damage of metals Give important new insights into the frictional effects of electrons Nominated as an outstanding contribution by Imperial College London Includes supplementary material: sn.pub/extras
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