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Current quantization and fractal hierarchy in a driven repulsive lattice gas

Articolo
Data di Pubblicazione:
2017
Citazione:
Current quantization and fractal hierarchy in a driven repulsive lattice gas / P. Rotondo, A..L. Sellerio, P. Glorioso, S. Caracciolo, M. Cosentino Lagomarsino, M. Gherardi. - In: PHYSICAL REVIEW. E. - ISSN 2470-0045. - 96:5(2017 Nov 29), pp. 052141.1-052141.7.
Abstract:
Driven lattice gases are widely regarded as the paradigm of collective phenomena out of equilibrium. While such models are usually studied with nearest-neighbor interactions, many empirical driven systems are dominated by slowly decaying interactions such as dipole-dipole and Van der Waals forces. Motivated by this gap, we study the nonequilibrium stationary state of a driven lattice gas with slow-decayed repulsive interactions at zero temperature. By numerical and analytical calculations of the particle current as a function of the density and of the driving field, we identify (i) an abrupt breakdown transition between insulating and conducting states, (ii) current quantization into discrete phases where a finite current flows with infinite differential resistivity, and (iii) a fractal hierarchy of excitations, related to the Farey sequences of number theory. We argue that the origin of these effects is the competition between scales, which also causes the counterintuitive phenomenon that crystalline states can melt by increasing the density.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
Physics - Statistical Mechanics; Physics - Statistical Mechanics; Statistical and Nonlinear Physics; Statistics and Probability; Condensed Matter Physics
Elenco autori:
P. Rotondo, A..L. Sellerio, P. Glorioso, S. Caracciolo, M. Cosentino Lagomarsino, M. Gherardi
Autori di Ateneo:
COSENTINO LAGOMARSINO MARCO ( autore )
GHERARDI MARCO ( autore )
GLORIOSO PIETRO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/541836
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/541836/938145/p167.pdf
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