Multiple-Time Scaling and Universal Behavior of the Earthquake Interevent Time Distribution

M. Bottiglieri, L. de Arcangelis, C. Godano, and E. Lippiello
Phys. Rev. Lett. 104, 158501 – Published 15 April 2010

Abstract

The interevent time distribution characterizes the temporal occurrence in seismic catalogs. Universal scaling properties of this distribution have been evidenced for entire catalogs and seismic sequences. Recently, these universal features have been questioned and some criticisms have been raised. We investigate the existence of universal scaling properties by analyzing a Californian catalog and by means of numerical simulations of an epidemic-type model. We show that the interevent time distribution exhibits a universal behavior over the entire temporal range if four characteristic times are taken into account. The above analysis allows us to identify the scaling form leading to universal behavior and explains the observed deviations. Furthermore, it provides a tool to identify the dependence on the mainshock magnitude of the c parameter that fixes the onset of the power law decay in the Omori law.

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  • Received 13 November 2009

DOI:https://doi.org/10.1103/PhysRevLett.104.158501

©2010 American Physical Society

Authors & Affiliations

M. Bottiglieri1, L. de Arcangelis2, C. Godano1, and E. Lippiello1

  • 1Department of Environmental Sciences and CNISM, Second University of Naples, Caserta, Italy
  • 2IfB, ETH, Schafmattstr.6, 8093 Zürich, CH, Switzerland, and Department of Information Engineering and CNISM, Second University of Naples, Aversa (CE), Italy

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Vol. 104, Iss. 15 — 16 April 2010

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