arXiv · astro-ph/0411747
Modelling the spin equilibrium of neutron stars in LMXBs without gravitational radiation
Abstract
In this paper we discuss the spin-equilibrium of accreting neutron stars in LMXBs. We demonstrate that, when combined with a naive spin-up torque, the observed data leads to inferred magnetic fields which are at variance with those of galactic millisecond radiopulsars. This indicates the need for either additional spin-down torques (eg. gravitational radiation) or an improved accretion model. We show that a simple consistent accretion model can be arrived at by accounting for radiation pressure in rapidly accreting systems (above a few percent of the Eddington accretion rate). In our model the inner disk region is thick and significantly sub-Keplerian, and the estimated equilibrium periods are such that the LMXB neutron stars have properties that accord well with the galactic millisecond radiopulsar sample. The implications for future gravitational-wave observations are also discussed briefly.
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N. Andersson, K. Glampedakis, B. Haskell, A. L. Watts. 2005-08-18. Modelling the spin equilibrium of neutron stars in LMXBs without gravitational radiation. https://doi.org/10.1111/j.1365-2966.2005.09167.x
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