Origin of multifractality in solar wind turbulence: the role of current sheets

Author:

Gomes Leonardo F1,Gomes Tiago F P1,Rempel Erico L12,Gama Sílvio3

Affiliation:

1. Aeronautics Institute of Technology (ITA) , São José dos Campos 12228-900, SP, Brazil

2. National Institute for Space Research (INPE) , PO Box 515, São José dos Campos 12227-010, SP, Brazil

3. Mathematics Center of the Porto University (CMUP), Mathematics Department, Faculty of Sciences, University of Porto , R. Campo Alegre s/n, P-4169-007 Porto, Portugal

Abstract

ABSTRACT In this work, a multifractal framework is proposed to investigate the effects of current sheets in solar wind turbulence. By using multifractal detrended fluctuation analysis coupled with surrogate methods and volatility, two solar wind magnetic field time series are investigated, one with current sheets and one without current sheets. Despite the lack of extreme-events intermittent bursts in the current sheet-free series, both series are shown to be strongly multifractal, although the current sheet-free series displays an almost linear behaviour for the scaling exponent of structure functions. Long-range correlations are shown to be the main source of multifractality for the series without current sheets, while a combination of heavy-tail distribution and non-linear correlations is responsible for multifractality in the series with current sheets. The multifractality in both time series is formally shown to be associated with an energy-cascade process using the p-model.

Funder

CAPES

CNPq

FCT

Fundação para a Ciência e a Tecnologia

CMUP

ERDF

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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