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On the maximum accretion luminosity of magnetized neutron stars: connecting X-ray pulsars and ultraluminous X-ray sources




TekijätAlexander A. Mushtukov, Valery F. Suleimanov, Sergey S. Tsygankov, Juri Poutanen

KustantajaOxford University Press

Julkaisuvuosi2015

JournalMonthly Notices of the Royal Astronomical Society

Lehden akronyymiMNRAS

Vuosikerta454

Numero3

Aloitussivu2539

Lopetussivu2548

Sivujen määrä10

ISSN0035-8711

DOIhttps://doi.org/10.1093/mnras/stv2087

Verkko-osoitehttp://arxiv.org/abs/1506.03600


Tiivistelmä

We study properties of luminous X-ray pulsars using a simplified model of the accretion column. The maximal possible luminosity is calculated as a function of the neutron star (NS) magnetic field and spin period. It is shown that the luminosity can reach values of the order of 10^40erg/s for the magnetar-like magnetic field (B≳10^14G) and long spin periods (P≳1.5s). The relative narrowness of an area of feasible NS parameters which are able to provide higher luminosities leads to the conclusion that L≃10^40erg/s is a good estimate for the limiting accretion luminosity of a NS. Because this luminosity coincides with the cut-off observed in the high mass X-ray binaries luminosity function which otherwise does not show any features at lower luminosities, we can conclude that a substantial part of ultra-luminous X-ray sources are accreting neutron stars in binary systems. 




Last updated on 2024-26-11 at 16:32