Atomic Scale Dynamics at Surfaces
Benedek, Giorgio, Toennies, Jan Peter
Produktnummer:
1868d9dfc43eb64c71a4c6ffa4c95c270f
Autor: | Benedek, Giorgio Toennies, Jan Peter |
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Themengebiete: | Electron Energy Loss Scattering Electron Energy Loss Spectroscopy Gas-Surface Interactions Helium Atom Surface Scattering Intermolecular Forces at Surfaces Quantum Measurement Science Surface Phonon Dispersion Curves |
Veröffentlichungsdatum: | 14.01.2019 |
EAN: | 9783662564417 |
Sprache: | Englisch |
Seitenzahl: | 625 |
Produktart: | Gebunden |
Verlag: | Springer Berlin |
Untertitel: | Theory and Experimental Studies with Helium Atom Scattering |
Produktinformationen "Atomic Scale Dynamics at Surfaces"
Experimental advances in helium atom scattering spectroscopy over the last forty years have allowed the measurement of surface phonon dispersion curves of more than 200 different crystal surfaces and overlayers of insulators, semiconductors and metals. The first part of the book presents, at a tutorial level, the fundamental concepts and methods in surface lattice dynamics, and the theory of atom-surface interaction and inelastic scattering in their various approximations, up to the recent electron-phonon theory of helium atom scattering from conducting surfaces. The second part of the book, after introducing the experimentalist to He-atom spectrometers and the rich phenomenology of helium atom scattering from corrugated surfaces, illustrates the most significant experimental results on the surface phonon dispersion curves of various classes of insulators, semiconductors, metals, layered crystals, topological insulators, complex surfaces, adsorbates, ultra-thin films and clusters. The great potential of helium atom scattering for the study of atomic scale diffusion, THz surface collective excitations, including acoustic surface plasmons, and the future prospects of helium atom scattering are presented in the concluding chapters. The book will be valuable reading for all researchers and graduate students interested in dynamical processes at surfaces.

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