English

Stellar activity analysis of Barnard's Star: Very slow rotation and evidence for long-term activity cycle

Solar and Stellar Astrophysics 2019-08-07 v3 Earth and Planetary Astrophysics

Abstract

The search for Earth-like planets around late-type stars using ultra-stable spectrographs requires a very precise characterization of the stellar activity and the magnetic cycle of the star, since these phenomena induce radial velocity (RV) signals that can be misinterpreted as planetary signals. Among the nearby stars, we have selected Barnard's Star (Gl 699) to carry out a characterization of these phenomena using a set of spectroscopic data that covers about 14.5 years and comes from seven different spectrographs: HARPS, HARPS-N, CARMENES, HIRES, UVES, APF, and PFS; and a set of photometric data that covers about 15.1 years and comes from four different photometric sources: ASAS, FCAPT-RCT, AAVSO, and SNO. We have measured different chromospheric activity indicators (Hα\alpha, Ca~{\sc II}~HK and Na I D), as well as the FWHM of the cross-correlation function computed for a sub-set of the spectroscopic data. The analysis of Generalized Lomb-Scargle periodograms of the time series of different activity indicators reveals that the rotation period of the star is 145 ±\pm 15 days, consistent with the expected rotation period according to the low activity level of the star and previous claims. The upper limit of the predicted activity-induced RV signal corresponding to this rotation period is about 1 m/s. We also find evidence of a long-term cycle of 10 ±\pm 2 years that is consistent with previous estimates of magnetic cycles from photometric time series in other M stars of similar activity levels. The available photometric data of the star also support the detection of both the long-term and the rotation signals.

Keywords

Cite

@article{arxiv.1812.06712,
  title  = {Stellar activity analysis of Barnard's Star: Very slow rotation and evidence for long-term activity cycle},
  author = {B. Toledo-Padrón and J. I. González Hernández and C. Rodríguez-López and A. Suárez Mascareño and R. Rebolo and R. P. Butler and I. Ribas and G. Anglada-Escudé and E. N. Johnson and A. Reiners and J. A. Caballero and A. Quirrenbach and P. J. Amado and V. J. S. Béjar and J. C. Morales and M. Perger and S. V. Jeffers and S. Vogt and J. Teske and S. Shectman and J. Crane and M. Díaz and P. Arriagada and B. Holden and J. Burt and E. Rodríguez and E. Herrero and F. Murgas and E. Pallé and N. Morales and M. J. López-González and E. Díez Alonso and M. Tuomi and M. Kiraga and S. G. Engle and E. F. Guinan and J. B. P. Strachan and F. J. Aceituno and J. Aceituno and V. M. Casanova and S. Martín-Ruiz and D. Montes and J. L. Ortiz and A. Sota and J. Briol and L. Barbieri and I. Cervini and M. Deldem and F. Dubois and F. -J. Hambsch and B. Harris and C. Kotnik and L. Logie and J. Lopez and M. McNeely and Y. Ogmen and L. Pérez and S. Rau and D. Rodríguez and F. S. Urquijo and S. Vanaverbeke},
  journal= {arXiv preprint arXiv:1812.06712},
  year   = {2019}
}

Comments

16 pages, 20 figures