Spatial survival probability for one-dimensional fluctuating interfaces in the steady state

Satya N. Majumdar and Chandan Dasgupta
Phys. Rev. E 73, 011602 – Published 9 January 2006

Abstract

We report numerical and analytic results for the spatial survival probability for fluctuating one-dimensional interfaces with Edwards-Wilkinson or Kardar-Parisi-Zhang dynamics in the steady state. Our numerical results are obtained from analysis of steady-state profiles generated by integrating a spatially discretized form of the Edwards-Wilkinson equation to long times. We show that the survival probability exhibits scaling behavior in its dependence on the system size and the “sampling interval” used in the measurement for both “steady-state” and “finite” initial conditions. Analytic results for the scaling functions are obtained from a path-integral treatment of a formulation of the problem in terms of one-dimensional Brownian motion. A “deterministic approximation” is used to obtain closed-form expressions for survival probabilities from the formally exact analytic treatment. The resulting approximate analytic results provide a fairly good description of the numerical data.

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  • Received 31 August 2005

DOI:https://doi.org/10.1103/PhysRevE.73.011602

©2006 American Physical Society

Authors & Affiliations

Satya N. Majumdar

  • Laboratoire de Physique Theorique et Modeles Statistiques, Universite Paris-Sud, Bat. 100, 91405 ORSAY cedex, France

Chandan Dasgupta

  • Centre for Condensed Matter Theory, Department of Physics, Indian Institute of Science, Bangalore 560012, India

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Vol. 73, Iss. 1 — January 2006

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