The mass and radius of the M-dwarf in the short period eclipsing binary RR Caeli
arXiv:astro-ph/0702005 · doi:10.1111/j.1365-2966.2007.11564.x
Abstract
We present new photometry and spectroscopy of the eclipsing white dwarf - M-dwarf binary star RR Cae. We use timings of the primary eclipse from white-light photo-electric photometry to derive a new ephemeris for the eclipses. We find no evidence for any period change greater than Pdot/P ~ 5E-12 over a timescale of 10 years. We have measured the effective temperature of the white dwarf, T_WD, from an analysis of two high resolution spectra of RR Cae and find T_WD = (7540 +- 175)K. We estimate a spectral type of M4 for the companion from the same spectra. We have combined new spectroscopic orbits for the white dwarf and M-dwarf with an analysis of the primary eclipse and cooling models for helium white dwarfs to measure the mass and radius of the M-dwarf. The mass of the M-dwarf is (0.182 - 0.183) +- 0.013 Msun and the radius is (0.203 - 0.215) +- 0.013 Rsun, where the ranges quoted for these values reflect the range of white dwarf models used. In contrast to previous studies, which lacked a spectroscopic orbit for the white dwarf, we find that the mass and radius of the M-dwarf are normal for an M4 dwarf. The mass of the white dwarf is (0.440 +-0.022) Msun. With these revised masses and radii we find that RR Cae will become a cataclysmic variable star when the orbital period is reduced from its current value of 7.3 hours to 121 minutes by magnetic braking in 9-20 Gyr. We note that there is night-to-night variability of a few seconds in the timing of primary eclipse caused by changes to the shape of the primary eclipse. We speculate as to the possible causes of this phenomenon. (Abridged)
Accepted for publication in MNRAS. The paper contains 10 figures and 3 tables
Cited by in corpus (20)
- Improving PARSEC models for very low mass stars
- 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
- The Future is Now: the Formation of Single Low Mass White Dwarfs in the Solar Neighborhood
- The Solar Neighborhood. XXI. Parallax Results from the CTIOPI 0.9m Program: 20 New Members of the 25 Parsec White Dwarf Sample
- Post Common Envelope Binaries from SDSS. V: Four eclipsing white dwarf main sequence binaries
- A Catalogue of Potential Post Common Envelope Binaries
- Cool Companions to White Dwarf Stars from the Two Micron All Sky Survey All Sky Data Release
- Fourteen new eclipsing white dwarf plus main-sequence binaries from the SDSS and Catalina surveys
- The Discovery of a Companion to the Lowest Mass White Dwarf
- The pre-cataclysmic variable, LTT560
- T-Lyr1-17236: A Long-Period Low-Mass Eclipsing Binary
- Discovery of the Partially Eclipsing White Dwarf Binary SDSS J143547.87+373338.5
- Eclipse timing variations in post-common envelope binaries: Are they a reliable indicator of circumbinary companions?
- Flares hunting in hot subdwarf and white dwarf stars from Cycles 1-5 of TESS photometry
- K-band spectroscopy of pre-cataclysmic variables
- Project Solaris, a Global Network of Autonomous Observatories: Design, Commissioning, and First Science Results
- Measurement of stellar and substellar winds using white dwarf hosts
- Direct detections of white dwarfs in four WD+dM post-common envelope binaries within 20 pc