Post common envelope binaries from SDSS. XII: The orbital period distribution
A. Nebot G\'omez-Mor\'an, B. T. G\"ansicke, M. R. Schreiber, A., Rebassa-Mansergas, A. D. Schwope, J. Southworth, A. Aungwerojwit, M. Bothe,, P. J. Davis, U. Kolb, M. M\"uller, C. Papadaki, S. Pyrzas, A. Rabitz, P., Rodr\'iguez-Gil, L. Schmidtobreick, R. Schwarz, C. Tappert

TL;DR
This study analyzes the orbital period distribution of post common envelope binaries from SDSS, providing insights into binary evolution and testing theoretical models with a large, homogeneous sample.
Contribution
It offers the first comprehensive orbital period distribution of SDSS WDMS binaries, constraining common envelope evolution and binary population models.
Findings
21-24% of WDMS binaries have undergone common envelope evolution
Orbital periods range from 1.9 hours to 4.3 days, peaking at ~10.3 hours
No significant population of PCEBs with periods of days to weeks
Abstract
The complexity of the common envelope phase and of magnetic stellar wind braking currently limits our understanding of close binary evolution. Because of their intrinsically simple structure, observational population studies of white dwarf plus main sequence (WDMS) binaries hold the potential to test theoretical models and constrain their parameters. The Sloan Digital Sky Survey (SDSS) has provided a large and homogeneously selected sample of WDMS binaries, which we are characterising in terms of orbital and stellar parameters. We have obtained radial velocity information for 385 WDMS binaries from follow-up spectroscopy, and for an additional 861 systems from the SDSS sub-spectra. Radial velocity variations identify 191 of these WDMS binaries as post common envelope binaries (PCEBs). Orbital periods of 58 PCEBs were subsequently measured, predominantly from time-resolved spectroscopy,…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Gamma-ray bursts and supernovae
