On WD-WD Mergers in Triple Systems: The Role of Kozai Resonance with Tidal Friction
arXiv:1305.2191
Abstract
White dwarf-white dwarf (WD-WD) mergers may lead to type Ia supernovae events. Thompson (2011) suggested that many such binaries are produced in hierarchical triple systems. The tertiary induces eccentricity oscillations in the inner binary via the Kozai-Lidov mechanism, driving the binary to high eccentricities, and significantly reducing the gravitational wave merger timescale (T_GW) over a broad range of parameter space. Here, we investigate the role of tidal forces in these systems. We show that tidal effects are important in the regime of moderately high initial relative inclination between the inner binary and the outer tertiary. For 85 < i_0 < 90 degrees (prograde) and 97 < i_0 < 102 degrees (retrograde), tides combine with GW radiation to dramatically decrease T_GW. In the regime of high inclinations between 91 < i_0 < 96 degrees, the inner binary likely suffers a direct collision, as in the work of Katz & Dong (2012) and tidal effects do not play an important role.
8 pages, 5 figures, 1 table, submitted to ApJ
Cited by in corpus (10)
- Suppression of extreme orbital evolution in triple systems with short range forces
- Secular dynamics of hierarchical quadruple systems: the case of a triple system orbited by a fourth body
- The fraction of type Ia supernovae exploding inside planetary nebulae (SNIPs)
- Constraining the double-degenerate scenario for Type Ia supernovae from merger ejected matter
- The explosion of supernova 2011fe in the frame of the core-degenerate scenario
- The response of a helium white dwarf to an exploding type Ia supernova
- What sodium absorption lines tell us about type Ia supernovae
- The fate of close encounters between binary stars and binary supermassive black holes
- Type Ia Supernovae from wide white-dwarfs triples
- Modified evolution of stellar binaries from supermassive black hole binaries