Detecting prolonged activity minima in binary stars. The case of $\zeta^{2}$ Ret
M. Flores, M. Jaque Arancibia, R. V. Iba\~nez Bustos, A. P. Buccino,, J. Yana Galarza, N. E. Nu\~nez, P. Miquelarena, J. Alacoria, C. Saffe, and, Pablo J. D. Mauas

TL;DR
This study investigates whether the binary star $$Ret is in a state similar to the Maunder Minimum by analyzing over 430 spectra for activity levels and cycles, suggesting it may be a first candidate in a binary system exhibiting such a state.
Contribution
The paper presents the first evidence of a Maunder Minimum candidate star identified through discrepant activity behavior in a binary system, based on long-term spectroscopic monitoring.
Findings
$$Ret shows a significantly decreased activity cycle amplitude.
A long-term activity cycle of approximately 7.9 years was identified in $$Ret.
A 4.2-year activity cycle was detected in its companion star.
Abstract
Context. It is well known that from 1645 to 1715 solar activity was notably low and the number of sunspots was extremely reduced. This epoch is known as the Maunder Minimum (MM). The study of stars in prolonged activity minima like the MM could help to shed light on this enigmatic epoch. Aims. To explore if the star Ret, which belongs to a binary system, is in a state similar to the MM. We have collected more than 430 spectra acquired between 2000 and 2019 with the HARPS, REOSC, UVES, and FEROS spectrographs. Methods. We performed a detailed long-term activity study of both components using the Mount Wilson index, which is obtained from the Ca II H\&K lines. To search for signs of an activity cycle, we analyzed the resulting time-series with the Generalized Lomb-Scargle and CLEAN periodograms. Results. Our spectroscopic analysis shows a high activity level for zet01…
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