English

New Suns in the Cosmos V: Stellar rotation and multifractality in active \textit{Kepler} stars

Solar and Stellar Astrophysics 2019-08-14 v1

Abstract

In the present study, high-precision time series photometry for the active \emph{Kepler} stars is described in the language of multifractals. We explore the potential of using the rescaled range analysis (R/SR/S) and multifractal detrended moving average analysis (MFDMA) methods to characterize the multiscale structure of the observed time series from a sample of \sim40 000 active stars. Among these stars, 6486 have surface differential rotation measurement, whereas 1846 have no signature of differential rotation. As a result, the Hurst exponent (HH) derived from both methods shows a strong correlation with the period derived from rotational modulation. In addition, the variability range RvarR_{var} reveals how this correlation follows a high activity ``line''. We also verify that the HH-index is an able parameter for distinguishing the different signs of stellar rotation that can exist between the stars with and without differential rotation. In summary, the results indicate that the Hurst exponent is a promising index for estimating photometric magnetic activity.

Keywords

Cite

@article{arxiv.1906.07331,
  title  = {New Suns in the Cosmos V: Stellar rotation and multifractality in active \textit{Kepler} stars},
  author = {D. B. de Freitas and M. M. F. Nepomuceno and L. D. Alves Rios and M. L. Das Chagas and J. R. De Medeiros},
  journal= {arXiv preprint arXiv:1906.07331},
  year   = {2019}
}

Comments

15 pages, 9 figures, 2 tables, accepted to ApJ