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A hexatic smectic phase with algebraically decaying bond-orientational order

Published 18 Sep 2017 in cond-mat.soft, cond-mat.mtrl-sci, and physics.comp-ph | (1709.06028v1)

Abstract: The hexatic phase predicted by the theories of two-dimensional melting is characterised by the power law decay of the orientational correlations whereas the in-layer bond orientational order in all the hexatic smectic phases observed so far was found to be long-range. We report a hexatic smectic phase where the in-layer bond orientational correlations decay as r<sup>1/4\propto r<sup>{-1/4}, in quantitative agreement with the hexatic ordering predicted by the theory for two dimensions. The phase was formed in a molecular dynamics simulation of a one-component system of particles interacting via a spherically symmetric potential. This is the first observation of the theoretically predicted two-dimensional hexatic order in a three-dimensional system.

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