Evidence for bimodal orbital separations of white dwarf-red dwarf binary stars
arXiv:1901.09139 · doi:10.1093/mnras/stz298
Abstract
We present the results of a radial velocity survey of 20 white dwarf plus M dwarf binaries selected as a follow up to a \textit{Hubble Space Telescope} study that aimed to spatially resolve suspected binaries. Our candidates are taken from the list of targets that were spatially unresolved with \textit{Hubble}. We have determined the orbital periods for 16 of these compact binary candidates. The period distribution ranges from 0.14 to 9.16\,d and peaks near 0.6\,d. The original sample therefore contains two sets of binaries, wide orbits (\,au) and close orbits (\,au), with no systems found in the \,au range. This observational evidence confirms the bimodal distribution predicted by population models and is also similar to results obtained in previous studies. We find no binary periods in the months to years range, supporting the post common envelope evolution scenario. One of our targets, WD\,1504+546, was discovered to be an eclipsing binary with a period of 0.93\,d.
References in corpus (8)
- The Catalina Surveys Periodic Variable Star Catalog
- A Catalog of Multiplicity among Bright Stellar Systems
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: comparison with the SDSS DR7 observed sample
- A survey for low mass spectroscopic binary stars in the young clusters around sigma Orionis and lambda Orionis
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: The effects of including recombination energy
- Post common envelope binaries from SDSS. II: Identification of 9 close binaries with VLT/FORS2
- Infrared Photometric Analysis of White Dwarfs from The Two Micron All Sky Survey and the Spitzer Space Telescope