Bonding of an Isolated K atom to a Surface: Experiment and Theory

We present a new and general technique with which the local properties of the unoccupied states of an adsorbed alkali atom in the low coverage limit can be studied. The method, based on a combination of experimental core level spectroscopy data and calculations, is demonstrated for the K/graphite sy...

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Veröffentlicht in:Physical Review Letters 1997-06, Vol.78 (26), p.4994-4997
Hauptverfasser: Sandell, A., Hjortstam, O., Nilsson, A., Brühwiler, P. A., Eriksson, O., Bennich, P., Rudolf, P., Wills, J. M., Johansson, B., Mårtensson, N.
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Sprache:eng
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Zusammenfassung:We present a new and general technique with which the local properties of the unoccupied states of an adsorbed alkali atom in the low coverage limit can be studied. The method, based on a combination of experimental core level spectroscopy data and calculations, is demonstrated for the K/graphite system. We show that core excitation and decay spectra of adsorbed Ar combined with the calculations form a most powerful tool in order to determine the unoccupied density of states for an isolated K adatom. We find that the 4s level of an isolated K atom on graphite is placed 2.7eV above E{sub F} , with a hybridization width of the order of only 0.1eV. {copyright} {ital 1997} {ital The American Physical Society}
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.78.4994