Abstract
A model and a method are proposed to explain the origin and main specific features of the dynamic patterns of different types, which were previously observed on the free surface of solids under load in experiments. It is shown that the pattern is formed due to the dynamic instability of the flat surface of the solid under load. This instability develops at the relaxation mechanism caused by the dynamic atomic displacements due to a change in the interatomic interaction during the electron-density redistribution.
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FUNDING
This study was performed within the Program for Basic Research of the State Academies of Sciences for 2013–2020 (line of research III.23). This study was supported in part by the Marie Curie International Research Staff Exchange Scheme Fellowship within the 7th European Community Framework Programme (Grant Agreement Number 612552).
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Translated by A. Sin’kov
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Khon, Y.A., Zapolsky, H., Kaminskii, P.P. et al. Dynamic Spatial and Temporal Structures on the Surface of Solids under Load. Phys. Solid State 61, 596–600 (2019). https://doi.org/10.1134/S1063783419040164
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DOI: https://doi.org/10.1134/S1063783419040164