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Stable accretion from a cold disc in highly magnetized neutron stars

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arxiv 1703.04528 v2 pith:FHNI3JIZ submitted 2017-03-13 astro-ph.HE

Stable accretion from a cold disc in highly magnetized neutron stars

classification astro-ph.HE
keywords accretionx-raycolddiscregimetransitionmagnetizedneutron
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The aim of this paper is to investigate the transition of a strongly magnetized neutron star into the accretion regime with very low accretion rate. For this purpose we monitored the Be-transient X-ray pulsar GRO J1008-57 throughout a full orbital cycle. The current observational campaign was performed with the Swift/XRT telescope in the soft X-ray band (0.5-10 keV) between two subsequent Type I outbursts in January and September 2016. The expected transition to the propeller regime was not observed. However, the transitions between different regimes of accretion were detected. In particular, after an outburst the source entered a stable accretion state characterised by the accretion rate of ~10^14-10^15 g/s. We associate this state with accretion from a cold (low-ionised) disc of temperature below ~6500 K. We argue that a transition to such accretion regime should be observed in all X-ray pulsars with certain combination of the rotation frequency and magnetic field strength. The proposed model of accretion from a cold disc is able to explain several puzzling observational properties of X-ray pulsars.

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