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An in-depth view of the microscopic dynamics of ising spin glasses at fixed temperature

  • F. Belletti
  • , A. Cruz
  • , L. A. Fernandez
  • , A. Gordillo-Guerrero
  • , M. Guidetti
  • , A. Maiorano
  • , F. Mantovani
  • , E. Marinari
  • , V. Martin-Mayor*
  • , J. Monforte
  • , A. Muñoz Sudupe
  • , D. Navarro
  • , G. Parisi
  • , S. Perez-Gaviro
  • , J. J. Ruiz-Lorenzo
  • , S. F. Schifano
  • , D. Sciretti
  • , A. Tarancon
  • , R. Tripiccione
  • , D. Yllanes
  • *Corresponding author for this work
  • University of Ferrara
  • University of Zaragoza
  • Complutense University
  • University of Extremadura
  • University of Rome La Sapienza

Research output: Contribution to journalArticlepeer-review

Abstract

Using the special-purpose computer Janus, we follow the nonequilibrium dynamics of the Ising spin glass in three dimensions for eleven orders of magnitude. The use of integral estimators for the coherence and correlation lengths allows us to study dynamic heterogeneities and the presence of a replicon mode and to obtain safe bounds on the Edwards-Anderson order parameter below the critical temperature. We obtain good agreement with experimental determinations of the temperature-dependent decay exponents for the thermoremanent magnetization. This magnitude is observed to scale with the much harder to measure coherence length, a potentially useful result for experimentalists. The exponents for energy relaxation display a linear dependence on temperature and reasonable extrapolations to the critical point. We conclude examining the time growth of the coherence length, with a comparison of critical and activated dynamics.

Original languageEnglish
Pages (from-to)1121-1158
Number of pages38
JournalJournal of Statistical Physics
Volume135
Issue number5-6
DOIs
StatePublished - Jun 2009
Externally publishedYes

Keywords

  • Characteristic length scales
  • Nonequilibrium dynamics
  • Spin glasses

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