Self organized criticality in an one dimensional magnetized grid. Application to GRB X-ray afterglows

A simplified one dimensional grid is used to model the evolution of magnetized plasma flow. We implement diffusion laws similar to those so-far used to model magnetic reconnection with Cellular Automata. As a novelty, we also explicitly superimpose a background flow. The aim is to numerically invest...

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Veröffentlicht in:Astrophysics and space science 2015-05, Vol.357 (1), p.1-9, Article 84
Hauptverfasser: Harko, Tiberiu, Mocanu, Gabriela, Stroia, Nicoleta
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Sprache:eng
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Zusammenfassung:A simplified one dimensional grid is used to model the evolution of magnetized plasma flow. We implement diffusion laws similar to those so-far used to model magnetic reconnection with Cellular Automata. As a novelty, we also explicitly superimpose a background flow. The aim is to numerically investigate the possibility that Self-Organized Criticality appears in a one dimensional magnetized flow. The cellular automaton’s cells store information about the parameter relevant to the evolution of the system being modelled. Under the assumption that this parameter stands for the magnetic field, the magnetic energy released by one grid cell during one individual relaxation event is also computed. Our results show that indeed in this system Self-Organized Criticality is established. The possible applications of this model to the study of the X-ray afterglows of GRBs is also briefly considered.
ISSN:0004-640X
1572-946X
DOI:10.1007/s10509-015-2228-4