English

Tracking the spin axes orbital alignment in selected binary systems - Torun Rossiter-McLaughlin effect survey

Solar and Stellar Astrophysics 2018-07-25 v1

Abstract

We have obtained high-resolution spectra of four eclipsing binary systems (FM Leo, NN Del, V963 Cen and AI Phe) with the view to gaining insight into the relative orientation of their stellar spin axes and orbital axes. The so called Rossiter-McLaughlin (RM) effect, i.e. the fact that the broadening and the amount of blue- or redshift in the spectra during an eclipse depend on the tilt of the spin axis of the background star, has the potential of reconciling observations and theoretical models if such a tilt is found. We analyse the RM effect by disentangling the spectra, removing the front component and measuring the remaining, distorted lines with a broadening function (BF) obtained from single value decomposition (SVD), weighting by the intensity centre of the BF in the eclipse. All but one of our objects show no significant misalignment, suggesting that aligned systems are dominant. We provide stellar as well as orbital parameters for our systems. With five measured spin-orbit angles we significantly increase (from 9 to 14) the number of stars for which it has been measured. The spin-orbit angle β\beta calculated for AI Phe's secondary component shows a misalignment of 87±\pm17 degrees. NN Del, with a large separation of components and a long dynamical timescale for circularisation and synchronisation, is an example of a close to primordial spin-orbit angle measurement.

Keywords

Cite

@article{arxiv.1805.00520,
  title  = {Tracking the spin axes orbital alignment in selected binary systems - Torun Rossiter-McLaughlin effect survey},
  author = {P. Sybilski and R. K. Pawłaszek and A. Sybilska and M. Konacki and K. G. Hełminiak and S. K. Kozłowski and M. Ratajczak},
  journal= {arXiv preprint arXiv:1805.00520},
  year   = {2018}
}

Comments

30 pages, 15 figures

R2 v1 2026-06-23T01:42:05.753Z