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Simultaneous NICER and NuSTAR observations of the Ultraluminous source NGC 4190 ULX-1

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arxiv 2403.12300 v2 pith:KEZCT4FH submitted 2024-03-18 astro-ph.HE

Simultaneous NICER and NuSTAR observations of the Ultraluminous source NGC 4190 ULX-1

classification astro-ph.HE
keywords sourceobservationsdisknicernustaranalysiscomptonizationdetected
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present an X-ray analysis of three different XMM-Newton observations together with simultaneous NICER and NuSTAR observations of the ultraluminous X-ray source NGC 4190 ULX-1. Our goal is to constrain the structure of the accretion disk and the geometrical properties of the source. We performed a temporal and spectral analyses in the 0.4--30 keV energy range where the source is significantly detected in dedicated XMM-Newton, NICER and NuSTAR observations. The temporal analysis shows no flaring activity in the light curves. No pulsation is detected throughout. The source exhibits a typical ULX spectrum, which can be fitted with two thermal blackbody components plus a Comptonization tail at high energies. The luminosity-temperature relation of each thermal spectral component is consistent with the $L \propto T^{2}$ relation expected from an advection-dominated supercritical disk. We interpret these results as a super-Eddington accreting black hole seen almost face-on. A dense wind ejected from the disk obscures the central source, and a hot electron plasma is evacuated through the funnel formed above the hole. Geometric beaming is responsible for the ULX soft emission, whereas the hard tail is the result of Comptonization of soft photons by the electrons ejected through the funnel.

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Cited by 1 Pith paper

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  1. Effects of Bethe-Heitler pair production in ultraluminous X-ray sources

    astro-ph.HE 2025-09 conditional novelty 6.0

    Secondary pairs from Bethe-Heitler interactions of relativistic protons in ULX funnels can produce 0.1-100 MeV emission at 10^34 to 10^38 erg/s, a testable hadronic signature.