English

Strong evidences for a nonextensive behavior of the rotation period in Open Clusters

Solar and Stellar Astrophysics 2015-06-22 v2

Abstract

Time-dependent nonextensivity in a stellar astrophysical scenario combines nonextensive entropic indices qKq_{K} derived from the modified Kawaler's parametrization, and qq, obtained from rotational velocity distribution. These qq's are related through a heuristic single relation given by qq0(1Δt/qK)q\approx q_{0}(1-\Delta t/q_{K}), where tt is the cluster age. In a nonextensive scenario, these indices are quantities that measure the degree of nonextensivity present in the system. Recent studies reveal that the index qq is correlated to the formation rate of high-energy tails present in the distribution of rotation velocity. On the other hand, the index qKq_{K} is determined by the stellar rotation-age relationship. This depends on the magnetic field configuration through the expression qK=1+4aN/3q_{K}=1+4aN/3, where aa and NN denote the saturation level of the star magnetic field and its topology, respectively. In the present study, we show that the connection qqKq-q_{K} is also consistent with 548 rotation period data for single main-sequence stars in 11 Open Clusters aged less than 1 Gyr. The value of qKq_{K}\sim 2.5 from our unsaturated model shows that the mean magnetic field topology of these stars is slightly more complex than a purely radial field. Our results also suggest that stellar rotational braking behavior affects the degree of anti-correlation between qq and cluster age tt. Finally, we suggest that stellar magnetic braking can be scaled by the entropic index qq.

Keywords

Cite

@article{arxiv.1408.0657,
  title  = {Strong evidences for a nonextensive behavior of the rotation period in Open Clusters},
  author = {D. B. de Freitas and M. M. F. Nepomuceno and B. B. Soares and J. R. P. Silva},
  journal= {arXiv preprint arXiv:1408.0657},
  year   = {2015}
}

Comments

6 pages and 2 figures, accepted to EPL on October 17, 2014