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Published March 2023 | Published
Journal Article Open

Unbinned likelihood analysis for X-ray polarization

Abstract

We present a systematic study of the unbinned, photon-by-photon likelihood technique which can be used as an alternative method to analyse phase-dependent, X-ray spectro-polarimetric observations obtained with IXPE and other photoelectric polarimeters. We apply the unbinned technique to models of the luminous X-ray pulsar Hercules X-1, for which we produce simulated observations using the ixpeobssim package. We consider minimal knowledge about the actual physical process responsible for the polarized emission from the accreting pulsar and assume that the observed phase-dependent polarization angle can be described by the rotating vector model. Using the unbinned technique, the detector's modulation factor, and the polarization information alone, we found that both the rotating vector model and the underlying spectro-polarimetry model can reconstruct equally well the geometric configuration angles of the accreting pulsar. However, the measured polarization fraction becomes biased with respect to the underlying model unless the energy dispersion and effective area of the detector are also taken into account. To this end, we present an energy-dispersed likelihood estimator that is proved to be unbiased. For different analyses, we obtain posterior distributions from multiple ixpeobssim realizations and show that the unbinned technique yields ~10 per cent smaller error bars than the binned technique. We also discuss alternative sources, such as magnetars, in which the unbinned technique and the rotating vector model might be applied.

Additional Information

© 2023 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Society. This article is published and distributed under the terms of the Oxford University Press, Standard Journals Publication Model (https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model). We thank the referee for the constructive comments and helpful suggestions. This work was supported by the Natural Sciences and Engineering Research Council of Canada (NSERC), (funding reference #CITA 490888-16). IC is a Sherman Fairchild Fellow at Caltech and thanks the Burke Institute at Caltech for supporting her research. JH acknowledges support from the Canadian Space Agency through the co-investigator grant program and from the NSERC through the Discovery Grant Program. This research was enabled in part by support provided by WestGrid (www.westgrid.ca) and Compute Canada (www.computecanada.ca). This research makes use of the SciServer science platform (www.sciserver.org) and UBC ARC Sockeye infrastructure. DATA AVAILABILITY. A short PYTHON worksheet with the simulations and analyses performed in this work is available in the link below: https://github.com/UBC-Astrophysics/Unbinned-Xray-polarimetry

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Additional details

Created:
August 22, 2023
Modified:
October 25, 2023