English

X-ray emission of contact binary variables within 1 kpc

High Energy Astrophysical Phenomena 2022-07-20 v1

Abstract

By assembling the largest sample to date of X-ray emitting EW-type binaries (EWXs), we carried out correlation analyses for the X-ray luminosity logLXL_{\textrm{X}}, and X-ray activity level log(LXL_{\textrm{X}}/LbolL_{\textrm{bol}}) versus the orbital period PP and effective temperature TeffT_{\rm eff}. We find strong PP-logLXL_{\textrm{X}} and PP-log(LXL_{\textrm{X}}/LbolL_{\textrm{bol}}) correlations for EWXs with PP < 0.44 days and we provide the linear parametrizations for these relations, on the basis of which the orbital period can be treated as a good predictor for logLXL_{\textrm{X}} and log(LXL_{\textrm{X}}/LbolL_{\textrm{bol}}). The aforementioned binary stellar parameters are all correlated with logLXL_{\textrm{X}}, while only TeffT_{\rm eff} exhibits a strong correlation with log(LXL_{\textrm{X}}/LbolL_{\textrm{bol}}). Then, EWXs with higher temperature show lower X-ray activity level, which could indicate the thinning of the convective area related to the magnetic dynamo mechanism. The total X-ray luminosity of an EWX is essentially consistent with that of an X-ray saturated main sequence star with the same mass as its primary, which may imply that the primary star dominates the X-ray emission. The monotonically decreasing PP-log(LXL_{\textrm{X}}/LbolL_{\textrm{bol}}) relation and the short orbital periods indicate that EWXs could all be in the X-ray saturated state, and they may inherit the changing trend of the saturated X-ray luminosities along with the mass shown by single stars. For EWXs, the orbital period, mass, and effective temperature increase in concordance. We demonstrate that the period P=0.44P=0.44 days corresponds to the primary mass of 1.1M\sim1.1 \rm M_\odot, beyond which the saturated X-ray luminosity of single stars will not continue to increase with mass. This explains the break in the positive PP-logLXL_{\textrm{X}} relation for EWXs with P>0.44P>0.44 days.

Keywords

Cite

@article{arxiv.2205.13210,
  title  = {X-ray emission of contact binary variables within 1 kpc},
  author = {Junhui Liu and Jianfeng Wu and Ali Esamdin and Wei-Min Gu and Mouyuan Sun and Junfeng Wang},
  journal= {arXiv preprint arXiv:2205.13210},
  year   = {2022}
}

Comments

16 pages, 7 figures and 8 tables; accepted for publication in A&A

R2 v1 2026-06-24T11:29:19.372Z