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Dynamical Tides in Compact White Dwarf Binaries: Influence of Rotation

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arxiv 1406.2717 v1 pith:O57PRBNW submitted 2014-06-10 astro-ph.SR

classification astro-ph.SR
keywords rotationtidalwavesdynamicalgravityimportantsystemsaccreting
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Tidal interactions play an important role in the evolution and ultimate fate of compact white dwarf (WD) binaries. Not only do tides affect the pre-merger state (such as temperature and rotation rate) of the WDs, but they may also determine which systems merge and which undergo stable mass transfer. In this paper, we attempt to quantify the effects of rotation on tidal angular momentum transport in binary stars, with specific calculations applied to WD stellar models. We incorporate the effect of rotation using the traditional approximation, in which the dynamically excited gravity waves within the WDs are transformed into gravito-inertial Hough waves. The Coriolis force has only a minor effect on prograde gravity waves, and previous results predicting the tidal spin-up and heating of inspiraling WDs are not significantly modified. However, rotation strongly alters retrograde gravity waves and inertial waves, with important consequences for the tidal spin-down of accreting WDs. We identify new dynamical tidal forcing terms that arise from a proper separation of the equilibrium and dynamical tide components; these new forcing terms are very important for systems near synchronous rotation. Additionally, we discuss the impact of Stokes drift currents on the wave angular momentum flux. Finally, we speculate on how tidal interactions will affect super-synchronously rotating WDs in accreting systems.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Detecting White Dwarf Binary Mergers with Gravitational Waves

    gr-qc 2025-10 conditional novelty 6.0 of 10

    MAGIS Space and AEDGE could detect white-dwarf-binary mergers in the 10 mHz–1 Hz band, giving early warning of Type Ia supernova explosions at rates of roughly one every four years and a few hundred per year, respectively.

  2. Astrophysics and cosmology with a decihertz gravitational-wave detector: TianGO

    gr-qc 2019-08 conditional novelty 6.0 of 10

    A decihertz space gravitational-wave detector paired with a ground network would localize compact binary mergers far more precisely than the ground network alone, supporting standard-siren cosmology, early warning, an...

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