White dwarf masses in cataclysmic variables
arXiv:1503.05197 · doi:10.1051/0004-6361/201323018
Abstract
The white dwarf (WD) mass distribution of cataclysmic variables (CVs) has recently been found to dramatically disagree with the predictions of the standard CV formation model. The high mean WD mass among CVs is not imprinted in the currently observed sample of CV progenitors and cannot be attributed to selection effects. Two possibilities have been put forward: either the WD grows in mass during CV evolution, or in a significant fraction of cases, CV formation is preceded by a (short) phase of thermal time-scale mass transfer (TTMT) in which the WD gains a sufficient amount of mass. We investigate if either of these two scenarios can bring theoretical predictions and observations into agreement. We employed binary population synthesis models to simulate the present intrinsic CV population. We incorporated aspects specific to CV evolution such as an appropriate mass-radius relation of the donor star and a more detailed prescription for the critical mass ratio for dynamically unstable mass transfer. We also implemented a previously suggested wind from the surface of the WD during TTMT and tested the idea of WD mass growth during the CV phase by arbitrarily changing the accretion efficiency. We compare the model predictions with the characteristics of CVs derived from observed samples. We find that mass growth of the WDs in CVs fails to reproduce the observed WD mass distribution. In the case of TTMT, we are able to produce a large number of massive WDs if we assume significant mass loss from the surface of the WD during the TTMT phase. However, the model still produces too many CVs with helium WDs. Moreover, the donor stars are evolved in many of these post-TTMT CVs, which contradicts the observations. We conclude that in our current framework of CV evolution neither TTMT nor WD mass growth can fully explain either the observed WD mass or the period distribution in CVs.
15 pages, 7 figures, 1 table, accepted for publication in A&A. Replaced and added a reference, corrected typos
References in corpus (17)
- Binary interaction dominates the evolution of massive stars
- The Donor Stars of Cataclysmic Variables
- White Dwarf Mass Distribution in the SDSS
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- Efficiency of mass transfer in massive close binaries, Tests from double-lined eclipsing binaries in the SMC
- Unstable Helium Shell Burning on Accreting White Dwarfs
- Post Common Envelope Binaries from SDSS. I: 101 white dwarf main sequence binaries with multiple SDSS spectroscopy
- On the evolutionary status of short period cataclysmic variables
- The single-degenerate channel for the progenitor of type Ia supernovae with different metallicities
- Evolution of stellar collision products in open clusters. I. Blue stragglers in N-body models of M67
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: The effects of including recombination energy
- How Many CVs are Crossing the Period Gap? A Test for the Disruption of Magnetic Braking
- The influence of selection effects on the observed cataclysmic variable population: modelling and application to the Palomar-Green sample
- ULTRACAM observations of SDSS J170213.26+322954.1 - an eclipsing cataclysmic variable in the period gap
- Next generation population synthesis of accreting white dwarfs: I. Hybrid calculations using BSE + MESA
- SDSSJ001153.08-064739.2, a cataclysmic variable with an evolved donor in the period gap
- The Accretion of Solar Material onto White Dwarfs: No Mixing with Core Material Implies that the Mass of the White Dwarf is Increasing
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- Hunting For Eclipses: High Speed Observations of Cataclysmic Variables
- Broad-band characteristics of seven new hard X-ray selected cataclysmic variables
- The origin of single low-mass WDs: another problem that consequential angular momentum loss in CVs might solve
- On the White Dwarf Mass Problem of Cataclysmic Variables