Varying disc-magnetosphere coupling as the origin of pulse profile variability in SAX J1808.4-3658

Kajava, Jari J. E. and İbragimov, Askar and Annala, Marja and Patruno, Alessandro and Poutanen, Juri (2011) Varying disc-magnetosphere coupling as the origin of pulse profile variability in SAX J1808.4-3658. Monthly Notices of the Royal Astronomical Society, 417 (2). pp. 1454-1465. ISSN 0035-8711

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Accreting millisecond pulsars show significant variability of their pulse profiles, especially at low accretion rates. On the other hand, their X-ray spectra are remarkably similar with not much variability over the course of the outbursts. For the first time, we have discovered that during the 2008 outburst of SAX J1808.4-3658 a major pulse profile change was accompanied by a dramatic variation of the disc luminosity at almost constant total luminosity. We argue that this phenomenon is related to a change in the coupling between the neutron star magnetic field and the accretion disc. The varying size of the pulsar magnetosphere can influence the accretion curtain geometry and affect the shape and the size of the hotspots. Using this physical picture, we develop a self-consistent model that successfully describes simultaneously the pulse profile variation as well as the spectral transition. Our findings are particularly important for testing the theories of accretion on to magnetized neutron stars, better understanding of the accretion geometry as well as the physics of discmagnetosphere coupling. The identification that varying hotspot size can lead to pulse profile changes has profound implications for determination of the neutron star masses and radii.
Item Type: Article
Uncontrolled Keywords: accretion, accretion discs; stars: neutron; pulsars: individual: SAX J1808,4-3658; X-rays: binaries
Subjects: Q Science > QB Astronomy > QB460-466 Astrophysics
Q Science > QB Astronomy
Divisions: Faculty of Engineering and Natural Sciences
Depositing User: Askar İbragimov
Date Deposited: 08 Jan 2012 18:08
Last Modified: 31 Jul 2019 10:04

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