arXiv · astro-ph/0410356
Gravitational wave radiation from the coalescence of white dwarfs
Abstract
We compute the emission of gravitational radiation from the merging of a close white dwarf binary system. This is done for a wide range of masses and compositions of the white dwarfs, ranging from mergers involving two He white dwarfs, mergers in which two CO white dwarfs coalesce to mergers in which a massive ONe white dwarf is involved. In doing so we follow the evolution of binary system using a Smoothed Particle Hydrodynamics code. Even though the coalescence process of the white dwarfs involves considerable masses, moving at relatively high velocities with a high degree of asymmetry we find that the signature of the merger is not very strong. In fact, the most prominent feature of the coalescence is that in a relatively small time scale (of the order of the period of the last stable orbit, typically a few minutes) the sources stop emitting gravitational waves. We also discuss the possible implications of our calculations for the detection of the coalescence within the framework of future space-borne interferometers like LISA.
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P. Loren-Aguilar, J. Guerrero, J. Isern, J. A. Lobo, E. Garcia-Berro. 2004-10-14. Gravitational wave radiation from the coalescence of white dwarfs. https://doi.org/10.1088/0264-9381%2F22%2F10%2F042%2010.1111%2Fj.1365-2966.2004.08472.x
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