Noise-induced kink propagation in shallow granular layers
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2020Metadata
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Jara Schulz, Gladys
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Noise-induced kink propagation in shallow granular layers
Abstract
Out of equilibrium systems are characterized by exhibiting the coexistence of domains with complex spatiotemporal dynamics. Here, we investigate experimentally the noise-induced domain wall propagation on a one-dimensional shallow granular layer subjected to an air flow oscillating in time. We present results of the appearance of an effective drift as a function of the inclination of the experimental cell, which can be understood using a simple Langevin model to describe the dynamical evolution of these solutions via its pinning-depinning transition. The statistical characterization of displacements of the granular kink position is performed. The dynamics of the stochastic model shows a fairly good agreement with the experimental observations.
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CONICYT-USA PII20150011
Millennium Institute for Research in Optics (MIRO)
Comisión Nacional de Investigación Cientifica y Tecnológica (CONICYT) CONICYT FONDECYT 1180903
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Chaos, Solitons and Fractals.134: (2020):109677
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