Macroscopic fluctuation theory and first-passage properties of surface diffusion
arXiv:1507.00822 · doi:10.1103/PhysRevE.93.020102
Abstract
We investigate non-equilibrium fluctuations of a solid surface governed by the stochastic Mullins-Herring equation with conserved noise. This equation describes surface diffusion of adatoms accompanied by their exchange between the surface and the bulk of the solid, when desorption of adatoms is negligible. Previous works dealt with dynamic scaling behavior of the fluctuating interface. Here we determine the probability that the interface first reaches a large given height at a specified time. We also find the optimal time history of the interface conditional on this non-equilibrium fluctuation. We obtain these results by developing a macroscopic fluctuation theory of surface diffusion.
6 pages including Supplemental Material, 3 figures
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Cited by in corpus (11)
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