Characterising eclipsing white dwarf M dwarf binaries from multi-band eclipse photometry
arXiv:2204.05155 · doi:10.1093/mnras/stac1047
Abstract
With the prevalence of wide-field, time-domain photometric sky surveys, the number of eclipsing white dwarf systems being discovered is increasing dramatically. An efficient method to follow these up will be key to determining any population trends and finding any particularly interesting examples. We demonstrate that multi-band eclipse photometry of binaries containing a white dwarf and an M~dwarf can be used to determine the masses and temperatures of the white dwarfs to better than 5 per cent. For the M~dwarfs we measure their parameters to a precision of better than 6 per cent with the uncertainty dominated by the intrinsic scatter of the M~dwarf mass-radius relationship. This precision is better than what can typically be achieved with low-resolution spectroscopy. The nature of this method means that it will be applicable to LSST data in the future, enabling direct characterisation without follow-up spectroscopy. Additionally, we characterise three new post-common-envelope binaries from their eclipse photometry, finding two systems containing hot helium-core white dwarfs with low-mass companions (one near the brown dwarf transition regime) and a possible detached cataclysmic variable at the lower edge of the period gap.
10 pages (and appendix), 5 figures, accepted to MNRAS
References in corpus (17)
- The Gaia mission
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- The Zwicky Transient Facility: Science Objectives
- The Donor Stars of Cataclysmic Variables
- ULTRACAM: an ultra-fast, triple-beam CCD camera for high-speed astrophysics
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- Post Common Envelope Binaries from SDSS. I: 101 white dwarf main sequence binaries with multiple SDSS spectroscopy
- Testing the white dwarf mass-radius relationship with eclipsing binaries
- HiPERCAM: a quintuple-beam, high-speed optical imager on the 10.4-m Gran Telescopio Canarias
- White dwarf-main sequence binaries from Gaia EDR3: the unresolved 100pc volume-limited sample
- Gravity and limb-darkening coefficients for compact stars: DA, DB, and DBA eclipsing white dwarfs
- Fourteen new eclipsing white dwarf plus main-sequence binaries from the SDSS and Catalina surveys
- The Gaia spectrophotometric standard stars survey - III. Short-term variability monitoring
- The Gaia spectrophotometric standard stars survey -- V. Preliminary flux tables for the calibration of Gaia DR2 and (E)DR3
- The Gaia spectrophotometric standard stars survey -- IV. Results of the absolute photometry campaign
- Uncovering the chemical structure of the pulsating low-mass white dwarf SDSS J115219.99+024814.4