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April 19, 1999Physical Review Letters1,250 citationsOpen Access

Thermal Contraction and Disordering of the Al(110) Surface

NMNicola MarzariDVDavid VanderbiltAVAlessandro De Vita

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Abstract

Al(110) has been studied for temperatures up to 900 K via ensemble density-functional molecular dynamics. The strong anharmonicity displayed by this surface results in a negative coefficient of thermal expansion, where the first interlayer distance decreases with increasing temperature. Very shallow channels of oscillation for the second-layer atoms in the direction perpendicular to the surface support this anomalous contraction, and provide a novel mechanism for the formation of adatom-vacancy pairs, preliminary to the disordering and premelting transition. Such characteristic behavior originates in the free-electron-gas bonding at a loosely packed surface.

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Marzari et al. (1999) studied this question.

synapsesocial.com/papers/69dd5cbc629747396240c3fbhttps://doi.org/10.1103/physrevlett.82.3296
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