Physics – Condensed Matter – Statistical Mechanics
Scientific paper
1998-10-27
Physics
Condensed Matter
Statistical Mechanics
4 pages, 5 ps figs, replaced misprint in authors name
Scientific paper
10.1103/PhysRevE.60.R1115
We apply the recently introduced distribution of sign-times (DST) to non-equilibrium interface growth dynamics. We are able to treat within a unified picture the persistence properties of a large class of relaxational and noisy linear growth processes, and prove the existence of a non-trivial scaling relation. A new critical dimension is found, relating to the persistence properties of these systems. We also illustrate, by means of numerical simulations, the different types of DST to be expected in both linear and non-linear growth mechanisms.
Newman Timothy J.
Sarma Sankar Das
Toroczkai Zoltan
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