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X-ray spectral and timing evolution of MAXI J1727-203 with NICER

Authors :
C. B. Markwardt
K. Alabarta
Jeroen Homan
Mariano Mendez
Keith C. Gendreau
Teruaki Enoto
R. Remillard
V. A. CĂșneo
Phil Uttley
James F. Steiner
Renee M. Ludlam
Zaven Arzoumanian
Francesco Tombesi
A. Castro
Tod E. Strohmayer
Peter Bult
D. J. K. Buisson
Diego Altamirano
Liang Zhang
High Energy Astrophys. & Astropart. Phys (API, FNWI)
Astronomy
Source :
Monthly Notices of the Royal Astronomical Society, 497(3), 3896-3910. Oxford University Press, Monthly Notices of the Royal Astronomical Society, 497(3). Oxford University Press
Publication Year :
2020

Abstract

We present a detailed X-ray spectral and variability study of the full 2018 outburst of MAXI J1727-203 using NICER observations. The outburst lasted approximately four months. Spectral modelling in the 0.3-10 keV band shows the presence of both a soft thermal and a hard Comptonised component. The analysis of these components shows that MAXI J1727-203 evolved through the soft, intermediate and hard spectral states during the outburst. We find that the soft (disc) component was detected throughout almost the entire outburst, with temperatures ranging from ~0.4 keV, at the moment of maximum luminosity, to ~0.1 keV near the end of the outburst. The power spectrum in the hard and intermediate states shows broadband noise up to 20 Hz, with no evidence of quasi-periodic oscillations. We also study the rms spectra of the broadband noise at 0.3-10 keV of this source. We find that the fractional rms increases with energy in most of the outburst except during the hard state, where the fractional rms remains approximately constant with energy. We also find that, below 3 keV, the fractional rms follows the same trend generally observed at energies >3 keV, a behaviour known from previous studies of black holes and neutron stars. The spectral and timing evolution of MAXI J1727-203, as parametrised by the hardness-intensity, hardness-rms, and rms-intensity diagrams, suggest that the system hosts a black hole, although we could not rule out a neutron star.<br />15 pages, 9 figures, 1 table, Accepted for publication in MNRAS main journal

Details

Language :
English
ISSN :
00358711
Database :
OpenAIRE
Journal :
Monthly Notices of the Royal Astronomical Society, 497(3), 3896-3910. Oxford University Press, Monthly Notices of the Royal Astronomical Society, 497(3). Oxford University Press
Accession number :
edsair.doi.dedup.....cf6537a0bd368170c0012fba36e4a21b