학술논문

Evolution of fractality in space plasmas of interest to geomagnetic activity
Document Type
article
Source
Nonlinear Processes in Geophysics, Vol 25, Pp 207-216 (2018)
Subject
Science
Physics
QC1-999
Geophysics. Cosmic physics
QC801-809
Language
English
ISSN
1023-5809
1607-7946
Abstract
We studied the temporal evolution of fractality for geomagnetic activity, by calculating fractal dimensions from the Dst data and from a magnetohydrodynamic shell model for turbulent magnetized plasma, which may be a useful model to study geomagnetic activity under solar wind forcing. We show that the shell model is able to reproduce the relationship between the fractal dimension and the occurrence of dissipative events, but only in a certain region of viscosity and resistivity values. We also present preliminary results of the application of these ideas to the study of the magnetic field time series in the solar wind during magnetic clouds, which suggest that it is possible, by means of the fractal dimension, to characterize the complexity of the magnetic cloud structure.