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   <dc:title>Synchronization, diversity, and topology of networks of integrate and fire oscillators</dc:title>
   <dc:creator>Guardiola Martínez, Xavier</dc:creator>
   <dc:creator>Díaz Guilera, Albert</dc:creator>
   <dc:creator>Llas Rubio, Mateu</dc:creator>
   <dc:creator>Pérez-Vicente, Conrado, 1962-</dc:creator>
   <dc:subject>Física mèdica</dc:subject>
   <dc:subject>Biofísica</dc:subject>
   <dc:subject>Física estadística</dc:subject>
   <dc:subject>Termodinàmica</dc:subject>
   <dc:subject>Sistemes dinàmics diferenciables</dc:subject>
   <dc:subject>Equacions d'estat</dc:subject>
   <dc:subject>Transformacions de fase (Física estadística)</dc:subject>
   <dc:subject>Medical physics</dc:subject>
   <dc:subject>Biophysics</dc:subject>
   <dc:subject>Statistical physics</dc:subject>
   <dc:subject>Thermodynamics</dc:subject>
   <dc:subject>Differentiable dynamical systems</dc:subject>
   <dc:subject>Equations of state</dc:subject>
   <dc:subject>Phase transformations (Statistical physics)</dc:subject>
   <dc:description>We study synchronization dynamics of a population of pulse-coupled oscillators. In particular, we focus our attention on the interplay between topological disorder and synchronization features of networks. First, we analyze synchronization time T in random networks, and find a scaling law which relates T to network connectivity. Then, we compare synchronization time for several other topological configurations, characterized by a different degree of randomness. The analysis shows that regular lattices perform better than a disordered network. This fact can be understood by considering the variability in the number of links between two adjacent neighbors. This phenomenon is equivalent to having a nonrandom topology with a distribution of interactions and it can be removed by an adequate local normalization of the couplings.</dc:description>
   <dc:date>2011-07-07T12:53:38Z</dc:date>
   <dc:date>2011-07-07T12:53:38Z</dc:date>
   <dc:date>2000</dc:date>
   <dc:type>info:eu-repo/semantics/article</dc:type>
   <dc:type>info:eu-repo/semantics/publishedVersion</dc:type>
   <dc:identifier>1063-651X</dc:identifier>
   <dc:identifier>https://hdl.handle.net/2445/18831</dc:identifier>
   <dc:identifier>172843</dc:identifier>
   <dc:language>eng</dc:language>
   <dc:relation>Reproducció del document publicat a: http://dx.doi.org/10.1103/PhysRevE.62.5565</dc:relation>
   <dc:relation>Physical Review e, 2000, vol. 62, núm. 4, p. 5565-5570</dc:relation>
   <dc:relation>http://dx.doi.org/10.1103/PhysRevE.62.5565</dc:relation>
   <dc:rights>(c) American Physical Society, 2000</dc:rights>
   <dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
   <dc:format>6 p.</dc:format>
   <dc:format>application/pdf</dc:format>
   <dc:publisher>The American Physical Society</dc:publisher>
   <dc:source>Articles publicats en revistes (Física de la Matèria Condensada)</dc:source>
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