English

Connecting measurements of solar and stellar brightness variations

Solar and Stellar Astrophysics 2020-07-01 v1 Earth and Planetary Astrophysics Instrumentation and Methods for Astrophysics

Abstract

Comparing solar and stellar brightness variations is hampered by the difference in spectral passbands used in observations as well as by the possible difference in the inclination of their rotation axes from the line of sight. We calculate the rotational variability of the Sun as it would be measured in passbands used for stellar observations. In particular, we consider the filter systems used by the CoRoT, KeplerKepler, TESS, and GaiaGaia space missions. We also quantify the effect of the inclination of the rotation axis on the solar rotational variability. We employ the Spectral And Total Irradiance REconstructions (SATIRE) model to calculate solar brightness variations in different filter systems as observed from the ecliptic plane. We then combine the simulations of the surface distribution of the magnetic features at different inclinations using a surface flux transport model (SFTM) with the SATIRE calculations to compute the dependence of the variability on the inclination. For an ecliptic-bound observer, the amplitude of the solar rotational variability, as observed in the total solar irradiance (TSI) is 0.68 mmag (averaged over solar cycles 21-24). We obtained corresponding amplitudes in the KeplerKepler (0.74 mmag), CoRoT (0.73 mmag), TESS (0.62 mmag), Gaia Gaia~ (0.74 mmag), Gaia GRPGaia~ G_{RP} (0.62 mmag), and ), Gaia GBPGaia~ G_{BP} (0.86 mmag) passbands. Decreasing the inclination of the rotation axis decreases the rotational variability. For a sample of randomly inclined stars, the variability is on average 15% lower in all filter systems considered in this work. This almost compensates for the difference in the amplitudes of the variability in TSI and KeplerKepler passbands, making the amplitudes derived from the TSI records an ideal representation of the solar rotational variability for comparison to KeplerKepler stars with unknown inclinations.

Keywords

Cite

@article{arxiv.2004.06974,
  title  = {Connecting measurements of solar and stellar brightness variations},
  author = {N. -E. Nèmec and E. Işık and A. I. Shapiro and S. K. Solanki and N. A. Krivova and Y. Unruh},
  journal= {arXiv preprint arXiv:2004.06974},
  year   = {2020}
}

Comments

9 pages, 9 figures, accepted for publication in Astronomy & Astrophysics