arXiv · 2110.15392
On the torque reversals of 4U 1626--67
Abstract
We have investigated the detailed torque-reversal behavior of 4U 1626--67 in the framework of the recently developed comprehensive model of the inner disk radius and torque calculations for neutron stars accreting from geometrically thin disks. The model can reproduce the torque -- X-ray luminosity relation across the torque reversals of 4U 1626--67. Our results imply that: (1) rotational equilibrium is reached when the inner disk radius equals the co-rotation radius, $r_\mathrm{co}$, while the conventional Alfven radius is greater than and close to $r_\mathrm{co}$, (2) both spin-up and spin-down torques are operating on either side of torque reversal, (3) with increasing accretion rate the spin-up torque associated with accretion onto the star gradually dominates the spin-down torque exerted by the disk. The torque reversals are the natural outcome of transitions between the well-defined weak-propeller and spin-up phases of the star with a stable geometrically thin accretion disk.
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Ali Arda Gencali, Ndiogou Niang, Ozan Toyran, Unal Ertan, Ayse Ulubay, Sinem Sasmaz, Ebru Devlen, Armin Vahdat, Seyda Ozcan, M. Ali Alpar. 2021-10-28. On the torque reversals of 4U 1626--67. https://doi.org/10.1051/0004-6361%2F202141772
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