Valery Suleimanov
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Articles (11)
Pulse profile modelling of thermonuclear burst oscillations – II. Handling variability
Pulse profile modelling is a relativistic ray-tracing technique that can be used to infer masses, radii, and geometric parameters of neutron stars. In a previous study, we looked at the performance of this technique when applied to thermonuclear burst oscillations from accreting neutron stars. That study showed that ignoring the variability associated with burst oscillation sources resulted in significant biases in the inferred mass and radius, particularly for the high count rates that are nominally required to obtain meaningful constraints. In this follow-on study, we show that the bias can be mitigated by slicing the bursts into shorter segments where variability can be neglected, and jointly fitting the segments. Using this approach, the systematic uncertainties on the mass and radius are brought within the range of the statistical uncertainty. With about 106 source counts, this yields uncertainties of approximately 10 per cent for both the mass and radius. However, this modelling strategy requires substantial computational resources. We also confirm that the posterior distributions of the mass and radius obtained from multiple bursts of the same source can be merged to produce outcomes comparable to that of a single burst with an equivalent total number of counts.
Year:
2023
Collaborators (7)
Fabio La Monaca
Istituto Nazionale di Astrofisica
Alexander A Mushtukov
University of Oxford
Sergey Tsygankov
University of Turku
Andrea Santangelo
Prof., Leiter Hochenergieastrophysik
University of Tuebingen
Raffaella Bonino
Università degli Studi di Torino
Klaus Werner
Prof. Dr.
University of Tübingen
Juri Poutanen
professor of astronomy, director
Turun Yliopisto

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