The book includes articles by leading experts in the field of surface diffusion discussing recent experimental and theoretical developments of the problem. The emphasis is on the study of surface diffusion when many mutually interacting atoms are present on the surface. Such interactions between atoms result in correlations in their motion. By measuring surface diffusion coefficients as a function of temperature, atom concentration, initial atom configuration, etc., the energy barriers of the diffusing atoms can be extracted. Theoretical analysis is used to develop a better understanding and predictability of how diffusion barriers vary from system to system.
Most of the articles in the book present the state of the art in the field i.e. how to measure and how to understand the dependence of the diffusion coefficient on different physical parameters (coverage, temperature, region of the phase diagram etc.) in different experimental systems.
The book is nicely balanced between theoretical and experimental articles. It will interest physicists, chemists, materials scientists working in the area of growth of new materials. Although its main emphasis is on understanding fundamental questions about the diffusion of atoms on surfaces, it will also interest people working in more applied aspects to produce atomic scale structures.
Le informazioni nella sezione "Riassunto" possono far riferimento a edizioni diverse di questo titolo.
I: Surface Diffusion at Equilibrium. Quasielastic Helium Scattering Studies of Surface Diffusion: The Diffusion Barrier; A.P. Graham, J.P. Toennies. Experimental Aspects of Metal Particle Diffusion on a Silicon Surface; J. Slezak, et al. Surface Dynamics of Stepped Si(001) Studied by Temporal LEED Spectroscopy; K. Kammler. Electric Current Induced Asymmetry of Surface Diffusion - Instability of Vicinal Crystal Surfaces; S.S. Stoyanov, et al. Memory Effects and Memory Functions in Surface Diffusion; T. Hjelt, et al. Driven Diffusion in a Model of the O/W(110) System; M.A. Zaluska-Kotur, et al. Surface Diffusion and Real-Space Renormalization Group; A.A. Tarasenko, et al. Surface Diffusion Near Phase Transitions; F. Nieto, et al. II: Surface Diffusion from Profile Evolution Methods. Surface Heterodiffusion in Adsorbed and Coadsorbed Overlayers of Li, Sr, and Cu on the W and Mo (112) Surfaces; A.T. Loburets, et al. Metal Heterodiffusion on Metallic Surfaces: Case of Pb on Cu; C. Cohen, et al. Step Effects on Surface Diffusion: A Comprehensive Study of CO on Pt(111); X. Xiao. Adsorption, Desorption, and Diffusion of Potassium on Metal and Oxide Surfaces; G. Kerner, et al. III: Surface Diffusion Under Non-equilibrium Conditions. Dynamics of Interacting Adparticles Under Non-Equilibrium Conditions; Z. Chvoj. Statistical-Mechanical Description of Nonequilibrium Processes in Interacting Lattice Gases; V.S. Vikhrenko, et al. Model Studies of Collective Diffusion; I. Vattulainen. Study of Non-Equilibrium Surface Diffusion From an Initial Step-Concentration Profile With a New Probability-Based Continuum Method; M.R. Dudek, M.C. Tringides. IV: Diffusion Mechanisms in Growth Processes. Diffusion on and IN Surfaces: The Atomic Slide Puzzle; J.W.M. Frenken, et al. Decay of Two-Dimensional Islands on Ag(110); K. Morgenstern, et al. Surface Morphology and dynamics: Using Ab-initio Total Energies to make the Most of STM Data; P.J. Feibelman. Substrate-Mediated Interaction on Ag(111) Surfaces From First Principles; K.A. Fichthorn, M. Scheffler. Diffusion of Adatoms and Small Clusters on Missing-Row-Reconstructed Surfaces; F. Montalenti, R. Ferrando. Effects of Adsorbates on Submonolayer Growth; M. Kotrla, et al. Surfactants in Semiconductor Heteroepitaxy: Thermodynamics and/or Kinetics? I. Markov. V: Substrate Effects and Surface Diffusion. Nonlinear Diffusion and Sliding Friction; S.C. Ying, et al. Selective Activation Dynamics: A Minimal Path Approach; L.Y. Chen, et al. Long Jumps in Surface Diffusion Investigated by Stochastic Equations; R. Ferrando, et al. Analytical Kinetic Theory of Single-Particle and Collective Surface Diffusion; S.Y. Krylov. Adatom Island Diffusion on Metal FCC(100) Surfaces; O.S. Trushin, et al. Paths, Barriers, and Prefactors for Adatom Descent from Ag Clusters on Ag(111); T.S. Rahman, et al. Correlated Diffusion of Adatoms and Islands on the Low indexed Surfaces of Noble Metals and Alloys; A.E. Evangelakis.
Le informazioni nella sezione "Su questo libro" possono far riferimento a edizioni diverse di questo titolo.
Da: Ria Christie Collections, Uxbridge, Regno Unito
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Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Germania
Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -As materials research focuses into finding ways to control the growth of atomic scale structures, there is correspondingly increasing emphasis on to the problem of surface diffusion. Clearly surface diffusion is the key process, which determines how atoms move on the surface. Controlling this motion can lead to the easy fabrication of well-controlled nanostructures broadening the present possibilities in nanotechnology. The paradigm of surface diffusion has outgrown its standard textbook description as a random walk on a rigid substrate. In real systems for more complex situations are encountered: interacting atoms are commonly present on the surface with their motions highly correlated, different phases form on the surface with different dynamics, large concentration gradients drive the system far away from the linear response regime, rich metastable structures form as a result of balanced interplay between different kinetic processes, substrate relaxation can change the energy landscape and the diffusion barriers, etc. The motivation behind this ARW was to bring together the international community working on these problems. We felt that the large number of researchers, new results, and well-formulated open questions in this area require some form of integration in a single forum. The ARW and the upcoming proceedings book with papers by the majority of the participants has provided this forum. The meeting was not planned as a continuation of the earlier NATO ASI in Rhodes in 1996, although several people have participated in both meetings. 372 pp. Englisch. Codice articolo 9780792371168
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Condizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Proceedings of the NATO Advanced Research Workshop on Collective Surface Diffusion Coefficients Under Non-Equilibrium Conditions, held in Prague, Czech Republic, 2-6 October, 2000 As materials research focuses into finding ways to control the growth o. Codice articolo 5969935
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Da: Kennys Bookshop and Art Galleries Ltd., Galway, GY, Irlanda
Condizione: New. Proceedings of the NATO Advanced Research Workshop on Collective Surface Diffusion Coefficients Under Non-Equilibrium Conditions, held in Prague, Czech Republic, 2-6 October, 2000 Editor(s): Tringides, M. C.; Chvoj, Z. Series: NATO Science Series II. Num Pages: 357 pages, biography. BIC Classification: PHF. Category: (G) General (US: Trade). Dimension: 240 x 160 x 25. Weight in Grams: 586. . 2001. Softcover reprint of the original 1st ed. 2001. Paperback. . . . . Codice articolo V9780792371168
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Taschenbuch. Condizione: Neu. Collective Diffusion on Surfaces: Correlation Effects and Adatom Interactions | Proceedings of the NATO Advanced Research Workshop on Collective Diffusion on Surfaces: Correlation Effects and Adatom Interactions Prague, Czech Republic 2-6 October 2000 | Z. Chvoj (u. a.) | Taschenbuch | x | Englisch | 2001 | Springer | EAN 9780792371168 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. Codice articolo 107100265
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Condizione: New. pp. 372. Codice articolo 264283138
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Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germania
Taschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -As materials research focuses into finding ways to control the growth of atomic scale structures, there is correspondingly increasing emphasis on to the problem of surface diffusion. Clearly surface diffusion is the key process, which determines how atoms move on the surface. Controlling this motion can lead to the easy fabrication of well-controlled nanostructures broadening the present possibilities in nanotechnology. The paradigm of surface diffusion has outgrown its standard textbook description as a random walk on a rigid substrate. In real systems for more complex situations are encountered: interacting atoms are commonly present on the surface with their motions highly correlated, different phases form on the surface with different dynamics, large concentration gradients drive the system far away from the linear response regime, rich metastable structures form as a result of balanced interplay between different kinetic processes, substrate relaxation can change the energy landscape and the diffusion barriers, etc. The motivation behind this ARW was to bring together the international community working on these problems. We felt that the large number of researchers, new results, and well-formulated open questions in this area require some form of integration in a single forum. The ARW and the upcoming proceedings book with papers by the majority of the participants has provided this forum. The meeting was not planned as a continuation of the earlier NATO ASI in Rhodes in 1996, although several people have participated in both meetings.Springer-Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 372 pp. Englisch. Codice articolo 9780792371168
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Condizione: New. Print on Demand pp. 372 264 Illus. Codice articolo 3597533
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Taschenbuch. Condizione: Neu. Druck auf Anfrage Neuware - Printed after ordering - As materials research focuses into finding ways to control the growth of atomic scale structures, there is correspondingly increasing emphasis on to the problem of surface diffusion. Clearly surface diffusion is the key process, which determines how atoms move on the surface. Controlling this motion can lead to the easy fabrication of well-controlled nanostructures broadening the present possibilities in nanotechnology. The paradigm of surface diffusion has outgrown its standard textbook description as a random walk on a rigid substrate. In real systems for more complex situations are encountered: interacting atoms are commonly present on the surface with their motions highly correlated, different phases form on the surface with different dynamics, large concentration gradients drive the system far away from the linear response regime, rich metastable structures form as a result of balanced interplay between different kinetic processes, substrate relaxation can change the energy landscape and the diffusion barriers, etc. The motivation behind this ARW was to bring together the international community working on these problems. We felt that the large number of researchers, new results, and well-formulated open questions in this area require some form of integration in a single forum. The ARW and the upcoming proceedings book with papers by the majority of the participants has provided this forum. The meeting was not planned as a continuation of the earlier NATO ASI in Rhodes in 1996, although several people have participated in both meetings. Codice articolo 9780792371168
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Condizione: New. PRINT ON DEMAND pp. 372. Codice articolo 184283144
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