Multiple variability time-scales of the early nitrogen-rich Wolf-Rayet star WR7
Abstract
We present the analysis of the optical variability of the early, nitrogen-rich Wolf-Rayet (WR) star WR7. The analysis of multi-sector Transiting Exoplanet Survey Satellite (TESS) light curves and high-resolution spectroscopic observations confirm multi-periodic variability that is modulated on time-scales of years. We detect a dominant period of d in the TESS sectors 33 and 34 light curves in addition to the previously reported high-frequency features from sector 7. We discuss the plausible mechanisms that may be responsible for such variability in WR7, including pulsations, binarity, co-rotating interacting regions (CIRs) and clumpy winds. Given the lack of strong evidence for the presence of a stellar or compact companion, we suggest that WR7 may pulsate in quasi-coherent modes in addition to wind variability likely caused by CIRs on top of stochastic low-frequency variability. WR7 is certainly a worthy target for future monitoring in both spectroscopy and photometry to sample both the short ( d) and long ( d) variability time scales.
Keywords
Cite
@article{arxiv.2205.11318,
title = {Multiple variability time-scales of the early nitrogen-rich Wolf-Rayet star WR7},
author = {J. A. Toalá and D. Bowman and T. Van Reeth and H. Todt and K. Dsilva and T. Shenar and G. Koenigsberger and S. Estrada-Dorado and L. M. Oskinova and W. -R. Hamann},
journal= {arXiv preprint arXiv:2205.11318},
year = {2022}
}
Comments
9 pages, 5 Figures, 1 Table; Accepted to MNRAS