Orbital Evolution of Compact White Dwarf Binaries
Abstract
The new-found prevalence of extremely low mass (ELM, Mhe<0.2 Msun) helium white dwarfs (WDs) in tight binaries with more massive WDs has raised our interest in understanding the nature of their mass transfer. Possessing small (Menv~1e-3 Msun) but thick hydrogen envelopes, these objects have larger radii than cold WDs and so initiate mass transfer of H-rich material at orbital periods of 6-10 minutes. Building on the original work of D'Antona et al., we confirm the 1e6 yr period of continued inspiral with mass transfer of H-rich matter and highlight that the inspiraling direct-impact double WD binary HM Cancri likely has an ELM WD donor. The ELM WDs have less of a radius expansion under mass loss, thus enabling a larger range of donor masses that can stably transfer matter and become a He mass transferring AM CVn binary. Even once in the long-lived AM CVn mass transferring stage, these He WDs have larger radii due to their higher entropy from the prolonged H burning stage.
Cite
@article{arxiv.1208.6320,
title = {Orbital Evolution of Compact White Dwarf Binaries},
author = {David L. Kaplan and Lars Bildsten and Justin D. R. Steinfadt},
journal= {arXiv preprint arXiv:1208.6320},
year = {2015}
}
Comments
9 pages, 8 figures. Accepted for publication in the Astrophysical Journal