A new pulsating neutron star in the Ultraluminous X-ray source NGC 4559 X7?
F. Pintore, C. Pinto, G. Rodriguez-Castillo, G.L. Israel, N. O., Pinciroli Vago, S. Motta, F. Barra, D. J. Walton, F. Fuerst, P. Kosec, C., Salvaggio, M. Del Santo, A. Wolter, M. Middleton, A. D'A\`i, E. Ambrosi, L., Burderi, M. Imbrogno, R. Salvaterra, A. Robba

TL;DR
This study investigates the ultraluminous X-ray source NGC 4559 X7, revealing potential pulsations indicating a neutron star, and characterizes its spectral states and variability, contributing to understanding super-Eddington accretion in ULXs.
Contribution
First detection of possible pulsations in NGC 4559 X7, suggesting it hosts a neutron star and providing detailed spectral and temporal analysis of its states.
Findings
Detected a 2.6-2.7s pulsed signal in XMM-Newton data.
Identified three spectral states driven by thermal components.
Observed flux variability and flaring activity.
Abstract
Ultraluminous X-ray sources (ULX) are extragalactic objects with X-ray luminosities above the Eddington limit for a 10 Msun black hole (BH). ULXs may host super-Eddington accreting neutron stars or stellar mass BH, although the exact proportion of the two populations is not yet known. We investigate the properties of the ULX NGC 4559 X7, which shows flux variability up to a factor of 5 on months-to-years and hours-to-days timescales. A flaring activity was also observed during the source highest flux epochs. Flares are unpredictable, with different durations and all flat-topped in flux. The latter suggests that, at the flare peaks, there is likely a common switch-off mechanism for the accretion onto the compact object. We analysed all the available XMM-Newton and Swift/XRT observations to investigate the spectral and temporal evolution of X7, looking for short and long-term variability.…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · High-pressure geophysics and materials · Geophysics and Sensor Technology
