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Precession and accretion in circumbinary discs: The case of HD 104237

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arxiv 1411.0687 v2 pith:RYNU4FZD submitted 2014-11-03 astro-ph.SR

Precession and accretion in circumbinary discs: The case of HD 104237

classification astro-ph.SR
keywords accretionprecessionbinaryfinddiscratebinariescavity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present the results of smoothed particle hydrodynamics (SPH) simulations of the disc around the young, eccentric stellar binary HD 104237. We find that the binary clears out a large cavity in the disc, driving a significant eccentricity at the cavity edge. This then precesses around the binary at a rate of $\dot{\varpi} = 0.48^{\circ}T_{\mathrm{b}}^{-1}$, which for HD 104237 corresponds to 40 years. We find that the accretion pattern into the cavity and onto the binary changes with this precession, resulting in a periodic accretion variability driven purely by the physical parameters of the binary and its orbit. For each star we find that this results in order of magnitude changes in the accretion rate. We also find that the accretion variability allows the primary to accrete gas at a higher rate than the secondary for approximately half of each precession period. Using a large number of 3-body integrations of test particles orbiting different binaries, we find good agreement between the precession rate of a test particle and our SPH disc precession. These rates also agree very well with the precession rates predicted by the analytic theory of Leung & Lee (2013), showing that their prescription can be accurately used to predict long-term accretion variability timescales for eccentric binaries accreting from a disc. We discuss the implications of our result, and suggest that this process provides a viable way of preserving unequal mass ratios in accreting eccentric binaries in both the stellar and supermassive black hole regimes

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Cited by 3 Pith papers

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  1. Peering through the disc of HD 98800 BaBb. Precise timing predictions for the HD 98800 AaAb occultation

    astro-ph.EP 2026-07 conditional novelty 5.0

    A joint orbital fit of new and archival data narrows the predicted 2025–2031 occultation windows of HD 98800 AaAb by the BaBb circumbinary disc to roughly 5–15 days for the sharpest crossings.

  2. Unstable magnetospheric accretion on the T Tauri star TW Hya

    astro-ph.SR 2026-07 accept novelty 4.5

    TW Hya’s large-scale field is a ~0.83 kG tilted dipole that varies yearly; accretion is unstable (rmag/rcor ≈ 0.33–0.40) and no close-in planet is detected above ~0.3–1 Mjup.

  3. Peering through the disc of HD 98800 BaBb. Precise timing predictions for the HD 98800 AaAb occultation

    astro-ph.EP 2026-07 conditional novelty 4.0

    New RVs and multi-wavelength astrometry tighten the HD 98800 outer orbit by ~2×, yielding 5–15-day 1σ windows for the 2025–2031 disc occultation of AaAb.