Apsidal motion and proximity effects in the massive binary BD+60 497

Fuente: arXiv
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Main Authors: Rauw, Gregor, Kolaczek-Szymanski, Piotr A., Naze, Yael, Nys, Lucas
Format: Preprint
Published: 2025
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author Rauw, Gregor
Kolaczek-Szymanski, Piotr A.
Naze, Yael
Nys, Lucas
author_facet Rauw, Gregor
Kolaczek-Szymanski, Piotr A.
Naze, Yael
Nys, Lucas
contents The eccentric short-period O-star binary BD+60 497 is an interesting laboratory in which to study tidal interactions in massive binary systems, notably via the detection and characterisation of apsidal motion. The rate of apsidal motion in such systems can help constrain their age and provide insight into the degree of mass concentration in the interior of massive stars. We used spectroscopic data collected over two decades to reconstruct the individual spectra of the stars and to establish their epoch-dependent radial velocities. An orbital solution, explicitly accounting for apsidal motion was adjusted to the data. Space-borne photometric time series were analysed with Fourier methods and with binary models. We derived a rate of apsidal motion of $6.15^{+1.05}_{-1.65}$ degree/yr, which suggests an age of $4.13^{+0.42}_{-1.37}$ Myr. The disentangled spectra unveiled a curious change in the spectral properties of the secondary star between the epochs 2002-2003 and 2018-2022 with the secondary spectrum appearing to be of an earlier spectral type over recent years. Photometric data show variability at the 6 mmag level on the period of the binary system, which is hard to explain in terms of proximity effects. Whilst the rate of apsidal motion agrees well with theoretical expectations, the changes in the reconstructed secondary spectrum hint at a highly non-uniform surface temperature distribution for this star. Different effects are discussed that could contribute to the photometric variations. The current most-likely explanation is a mix of proximity effects and tidally excited oscillations
format Preprint
id arxiv_https___arxiv_org_abs_2509_12762
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Apsidal motion and proximity effects in the massive binary BD+60 497
Rauw, Gregor
Kolaczek-Szymanski, Piotr A.
Naze, Yael
Nys, Lucas
Solar and Stellar Astrophysics
The eccentric short-period O-star binary BD+60 497 is an interesting laboratory in which to study tidal interactions in massive binary systems, notably via the detection and characterisation of apsidal motion. The rate of apsidal motion in such systems can help constrain their age and provide insight into the degree of mass concentration in the interior of massive stars. We used spectroscopic data collected over two decades to reconstruct the individual spectra of the stars and to establish their epoch-dependent radial velocities. An orbital solution, explicitly accounting for apsidal motion was adjusted to the data. Space-borne photometric time series were analysed with Fourier methods and with binary models. We derived a rate of apsidal motion of $6.15^{+1.05}_{-1.65}$ degree/yr, which suggests an age of $4.13^{+0.42}_{-1.37}$ Myr. The disentangled spectra unveiled a curious change in the spectral properties of the secondary star between the epochs 2002-2003 and 2018-2022 with the secondary spectrum appearing to be of an earlier spectral type over recent years. Photometric data show variability at the 6 mmag level on the period of the binary system, which is hard to explain in terms of proximity effects. Whilst the rate of apsidal motion agrees well with theoretical expectations, the changes in the reconstructed secondary spectrum hint at a highly non-uniform surface temperature distribution for this star. Different effects are discussed that could contribute to the photometric variations. The current most-likely explanation is a mix of proximity effects and tidally excited oscillations
title Apsidal motion and proximity effects in the massive binary BD+60 497
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2509.12762