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Swift, NuSTAR, and INTEGRAL observations of the symbiotic X-ray binary IGR J16194-2810

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arxiv 2311.07197 v1 pith:2ZN3FAFF submitted 2023-11-13 astro-ph.HE

classification astro-ph.HE
keywords j16194-2810x-rayabsorptionbinarycampaignpresencespectrumsymbiotic
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We report on a simultaneous observational campaign with both Swift/XRT and NuSTAR targeting the symbiotic X-ray binary IGR J16194-2810. The main goal of the campaign was to investigate the possible presence of cyclotron scattering absorption features in the broad-band spectrum of the source, and help advance our understanding of the process of neutron star formation via the accretion-induced collapse of a white dwarf. The 1-30 keV spectrum of the source, as measured during our campaign, did not reveal the presence of any statistically significant absorption feature. The spectrum could be well described using a model comprising a thermal black-body hot component, most likely emerging from the surface of the accreting neutron star, and a power-law with no measurable cut-off energy (and affected by a modest absorption column density). Compared to previous analyses in the literature, we could rule out the presence of a colder thermal component emerging from an accretion disk, compatible with the idea that IGR J16194-2810 is a wind-fed binary (as most of the symbiotic X-ray binaries). Our results were strengthened by exploiting the archival XRT and INTEGRAL data, extending the validity of the spectral model used up to 0.3-40 keV and demonstrating that IGR J16194-2810 is unlikely to undergo significant spectral variability over time in the X-ray domain.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Cataclysmic variables from SRG/eROSITA: new systems from eRASS1

    astro-ph.SR 2026-07 accept novelty 6.0 of 10

    A Random Forest plus Gaia/eROSITA match yields 156 spectroscopically confirmed CVs from eRASS1, spanning subtypes, periods, and luminosities, with the method outperforming several published alternatives.

  2. Symbiotic stars in the era of modern ground- and space-based surveys

    astro-ph.SR 2025-04 accept novelty 2.0 of 10

    A review of how large-scale photometric and spectroscopic surveys have transformed the discovery, classification, and variability studies of symbiotic stars.

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