Measuring the masses of magnetic white dwarfs: A NuSTAR Legacy Survey
arXiv:2008.09684 · doi:10.1093/mnras/staa2592
Abstract
The hard X-ray spectrum of magnetic cataclysmic variables can be modelled to provide a measurement of white dwarf mass. This method is complementary to radial velocity measurements, which depend on the (typically rather uncertain) binary inclination. Here we present results from a Legacy Survey of 19 magnetic cataclysmic variables with NuSTAR. We fit accretion column models to their 20-78 keV spectra and derive the white dwarf masses, finding a weighted average , with a standard deviation , when we include the masses derived from previous NuSTAR observations of seven additional magnetic cataclysmic variables. We find that the mass distribution of accreting magnetic white dwarfs is consistent with that of white dwarfs in non-magnetic cataclysmic variables. Both peak at a higher mass than the distributions of isolated white dwarfs and post-common-envelope binaries. We speculate as to why this might be the case, proposing that consequential angular momentum losses may play a role in accreting magnetic white dwarfs and/or that our knowledge of how the white dwarf mass changes over accretion-nova cycles may also be incomplete.
14 pages. 5 figures in main paper, 1 figure in appendix. Accepted for publication in MNRAS
References in corpus (11)
- Magnetic White Dwarfs
- Magnetic fields in isolated and interacting white dwarfs
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: comparison with the SDSS DR7 observed sample
- Intermediate polars in the Swift/BAT survey: Spectra and white dwarf masses
- Observational Signatures of SNIa Progenitors, as Predicted by Models
- White dwarf masses in cataclysmic variables
- The X-ray properties of the magnetic Cataclysmic Variable UU Col
- Are white dwarf magnetic fields in close binaries generated during common-envelope evolution?
- Magnetically moderated outbursts of WZ Sagittae
- Constraining the accretion geometry of the intermediate polar EX Hya using NuSTAR, Swift and Chandra observations
- DW Cancri in x-rays