English

$\zeta^{1} + \zeta^{2}$ Reticuli binary system: A puzzling chromospheric activity pattern

Solar and Stellar Astrophysics 2018-04-04 v1

Abstract

We perform, for the first time, a detailed long-term activity study of the binary system ζ\zeta Ret. We use all available HARPS spectra obtained between the years 2003 and 2016. We built a time series of the Mount Wilson SS index for both stars, then we analyse these series by using Lomb-Scargle periodograms. The components ζ1\zeta^{1} Ret and ζ2\zeta^{2} Ret that belong to this binary system are physically very similar to each other and also similar to our Sun, which makes it a remarkable system. We detect in the solar-analogue star ζ2\zeta^{2} Ret a long-term activity cycle with a period of \sim10 yr, similar to the solar one (\sim11 yr). It is worthwhile to mention that this object satisfies previous criteria for a flat star and for a cycling star simultaneously. Another interesting feature of this binary system, is a high \sim0.220 dex difference between the averages log(RHK\mathrm{R}'_\mathrm{HK}) activity levels of both stars. Our study clearly shows that ζ1\zeta^{1} Ret is significantly more active than ζ2\zeta^{2} Ret. In addition, ζ1\zeta^{1} Ret shows an erratic variability in its stellar activity. In this work, we explore different scenarios trying to explain this rare behaviour in a pair of coeval stars, which could help to explain the difference in this and other binary systems. From these results, we also warn that for the development of activity-age calibrations (which commonly use binary systems and/or stellar clusters as calibrators) it should be taken into account the whole history of activity available of the stars involved.

Cite

@article{arxiv.1801.08104,
  title  = {$\zeta^{1} + \zeta^{2}$ Reticuli binary system: A puzzling chromospheric activity pattern},
  author = {M. Flores and C. Saffe and A. Buccino and M. Jaque Arancibia and J. F. González and N. E. Nuñez and E. Jofré},
  journal= {arXiv preprint arXiv:1801.08104},
  year   = {2018}
}

Comments

9 pages and 8 figures

R2 v1 2026-06-22T23:54:38.861Z