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Structural relaxation and aging scaling in the Coulomb and Bose glass models

Hiba Assi, Harshwardhan Chaturvedi, Michel Pleimling and Uwe Claus Täuber ()
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Hiba Assi: Department of Physics & Center for Soft Matter and Biological Physics (MC 0435)
Harshwardhan Chaturvedi: Department of Physics & Center for Soft Matter and Biological Physics (MC 0435)
Michel Pleimling: Department of Physics & Center for Soft Matter and Biological Physics (MC 0435)
Uwe Claus Täuber: Department of Physics & Center for Soft Matter and Biological Physics (MC 0435)

The European Physical Journal B: Condensed Matter and Complex Systems, 2016, vol. 89, issue 11, 1-15

Abstract: Abstract We employ Monte Carlo simulations to study the relaxation properties of the two-dimensional Coulomb glass in disordered semiconductors and the three-dimensional Bose glass in type-II superconductors in the presence of extended linear defects. We investigate the effects of adding non-zero random on-site energies from different distributions on the properties of the correlation-induced Coulomb gap in the density of states (DOS) and on the non-equilibrium aging kinetics highlighted by the density autocorrelation functions. We also probe the sensitivity of the system’s equilibrium and non-equilibrium relaxation properties to instantaneous changes in the density of charge carriers in the Coulomb glass or flux lines in the Bose glass.

Keywords: Statistical; and; Nonlinear; Physics (search for similar items in EconPapers)
Date: 2016
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DOI: 10.1140/epjb/e2016-70368-y

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