Abstract
The technique of bootstrapped discrete scale invariance allows multiple time-series of different observables to be normalized in terms of observed and predicted characteristic timescales. A case study is presented using the SINT2000 time-series of virtual axial dipole moment, which spans the past 2 Myr. It is shown that this sequence not only bears a clear signature of a preferred timescale of about 55.6 Ka, but additionally predicts similar features (of shorter and longer duration) that are actually observed on the timescales of historical secular variation and dipole reversals, respectively. In turn, the latter two empirical sources both predict the characteristic timescale found in the dipole intensity sequence. These communal scaling characteristics suggest that a single underlying process could be driving dynamo fluctuations across all three observed timescales, from years to millions of years. © 2007 The Author Journal compilation © 2007 RAS.
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CITATION STYLE
Jonkers, A. R. T. (2007). Bootstrapped discrete scale invariance analysis of geomagnetic dipole intensity. Geophysical Journal International, 169(2), 646–658. https://doi.org/10.1111/j.1365-246X.2007.03352.x
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