Binary systems are ubiquitous in the Universe and often host circumbinary discs that are misaligned with the binary orbital plane. Such misalignments can affect disc evolution and binary accretion variability. Here we present 3D hydrodynamical simulations of circumbinary discs with initial tilts i(0) from 0 degrees to 180 degrees, around eccentric binaries with secondary-to-primary mass ratios of 0.11-0.67. We find that both the initial tilt and mass ratio can affect the long-term accretion variability in our simulations. Discs evolving towards polar and coplanar retrograde generally favour accretion onto the primary star, while discs evolving towards coplanar prograde generally favour accretion onto the secondary. We find the preferential accretion ratio eta = <(M) over dot(2)>/<(M) over dot(b)> to be a non-monotonic function of the mass ratio. For discs close to coplanar prograde alignment, eta increases with decreasing mass ratio, whereas for discs with 30 degrees <= i(0) <= 130 degrees, eta decreases for smaller mass ratios. Polar discs show the lowest mass-loss rates, slightly lower than those of coplanar prograde discs, while retrograde discs lose mass faster than their prograde counterparts. Discs that undergo strong warping or breaking experience rapid mass loss. Our findings provide insights into observed circumbinary discs and have implications for circumbinary planet formation.
Ruiqi, Y., Smallwood, J., 邓洪平, 李., Franchini, A., 董若冰, 刘. (2026). Misaligned circumbinary discs around unequal-mass eccentric binaries: alignment, morphology, and binary accretion variability. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 548(4 (June 2026)) [10.1093/mnras/stag731].
Misaligned circumbinary discs around unequal-mass eccentric binaries: alignment, morphology, and binary accretion variability
Franchini A.;
2026
Abstract
Binary systems are ubiquitous in the Universe and often host circumbinary discs that are misaligned with the binary orbital plane. Such misalignments can affect disc evolution and binary accretion variability. Here we present 3D hydrodynamical simulations of circumbinary discs with initial tilts i(0) from 0 degrees to 180 degrees, around eccentric binaries with secondary-to-primary mass ratios of 0.11-0.67. We find that both the initial tilt and mass ratio can affect the long-term accretion variability in our simulations. Discs evolving towards polar and coplanar retrograde generally favour accretion onto the primary star, while discs evolving towards coplanar prograde generally favour accretion onto the secondary. We find the preferential accretion ratio eta = <(M) over dot(2)>/<(M) over dot(b)> to be a non-monotonic function of the mass ratio. For discs close to coplanar prograde alignment, eta increases with decreasing mass ratio, whereas for discs with 30 degrees <= i(0) <= 130 degrees, eta decreases for smaller mass ratios. Polar discs show the lowest mass-loss rates, slightly lower than those of coplanar prograde discs, while retrograde discs lose mass faster than their prograde counterparts. Discs that undergo strong warping or breaking experience rapid mass loss. Our findings provide insights into observed circumbinary discs and have implications for circumbinary planet formation.| File | Dimensione | Formato | |
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