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Jennifer Ribeiro

Publications and source records attributed to Jennifer Ribeiro.

2 recordsLinked to original sources

Long-range correlation studies in deep earthquakes global series

In the present paper we have conducted studies on seismological properties using worldwide data of deep earthquakes (depth larger than 70 km), considering events with magnitude $m \geq 4.5$. We have addressed the problem under the perspective of complex networks, using a time window model to build the networks for deep earthquakes, which present scale-free and small-world features. This work is an extension of a previous study using a similar approach, for shallow events. Our results for deep events corroborate with those found for the shallow ones, since the connectivity distribution for deep earthquakes also follows a q-exponential distribution and the scaling behavior is present. Our results were analysed using both, complex networks and Nonextensive Statistical Mechanics, contributing to strengthen the use of the time window model to construct epicenters networks. They reinforce the idea of long-range correlations between earthquakes and the criticality of the seismological system.

physics.geo-ph

Towards Evidence of Long-Range Correlations in Shallow Seismic Activities

In this work, we introduce a new methodology to construct a network of epicenters that avoids problems found in well-established methodologies when they are applied to global catalogs of earthquakes located in shallow zones. The new methodology involves essentially the introduction of a time window which works as a temporal filter. Our approach is more generic and for small regions the results coincide with previous findings. The network constructed with that model has small-world properties and the distribution of node connectivity follows a non-traditional function, namely a q-exponential, where scale-free properties are present. The vertices with larger connectivity in the network correspond to the areas with very intense seismic activities in the period considered. These new results strengthen the hypothesis of long spatial and temporal correlations between earthquakes.

physics.geo-ph