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Reconstruction of effective potential from statistical analysis of dynamic trajectories

Published 27 Feb 2020 in cond-mat.mes-hall, cond-mat.mtrl-sci, and physics.comp-ph | (2002.12193v1)

Abstract: The broad incorporation of microscopic methods is yielding a wealth of information on atomic and mesoscale dynamics of individual atoms, molecules, and particles on surfaces and in open volumes. Analysis of such data necessitates statistical frameworks to convert observed dynamic behaviors to effective properties of materials. Here we develop a method for stochastic reconstruction of effective acting potentials from observed trajectories. Using the Silicon vacancy defect in graphene as a model, we develop a statistical framework to reconstruct the free energy landscape from calculated atomic displacements.

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