Chromospheric activity and evolutionary age of the Sun and four solar twins
M. Mittag (1), K.-P. Schr\"oder (2), A. Hempelmann (1), J.N., Gonz\'alez-P\'erez (1), and J.H.M.M. Schmitt (1) ((1) Hamburger Sternwarte,, Universit\"at Hamburg, Gojenbergsweg 112, 21029 Hamburg, Germany, (2), Departamento de Astronomia, Universidad de Guanajuato, Mexico)

TL;DR
This study compares chromospheric activity and ages of the Sun and four solar twins, finding that relative age correlates better with activity levels than absolute age, aiding in identifying true solar analogs.
Contribution
It provides a detailed analysis of activity levels and ages of solar twins using Mount Wilson S-indices and evolutionary models, emphasizing the importance of relative age in solar twin identification.
Findings
HD 101364 and HD 197027 have activity levels similar to the Sun.
The absolute ages of the stars range from 5.1 to 7.2 Gyr.
Relative age correlates better with activity than absolute age.
Abstract
The activity levels of the solar-twin candidates HD 101364 and HD 197027 are measured and compared with the Sun, the known solar twin 18 Sco, and the solar-like star 51 Peg. Furthermore, the absolute ages of these five objects are estimated from their positions in the HR diagram and the evolutionary (relative) age compared with their activity levels. To represent the activity level of these stars, the Mount Wilson S-indices were used. To obtain consistent ages and evolutionary advance on the main sequence, we used evolutionary tracks calculated with the Cambridge Stellar Evolution Code. From our spectroscopic observations of HD 101364 and HD 197027 and based on the established calibration procedures, the respective Mount Wilson S-indices are determined. We find that the chromospheric activity of both stars is comparable with the present activity level of the Sun and that of 18 Sco, at…
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