Timing analysis of Swift J0243.6+6124 with NICER and Fermi/GBM during the decay phase of the 2017-2018 outburst
arXiv:2304.11937 · doi:10.1093/mnras/stad1407
Abstract
We present a timing and noise analysis of the Be/X-ray binary system Swift J0243.6+6124 during its 2017-2018 super-Eddington outburst using NICER/XTI observations. We apply a synthetic pulse timing analysis to enrich the Fermi/GBM spin frequency history of the source with the new measurements from NICER/XTI. We show that the pulse profiles switch from double-peaked to single-peaked when the X-ray luminosity drops below erg s. We suggest that this transitional luminosity is associated with the transition from a pencil beam pattern to a hybrid beam pattern when the Coulomb interactions become ineffective to decelerate the accretion flow, which implies a dipolar magnetic field strength of G. We also obtained the power density spectra (PDS) of the spin frequency derivative fluctuations. The red noise component of the PDS is found to be steeper () than the other transient accreting sources. We find significantly high noise strength estimates above the super-Eddington luminosity levels, which may arise from the torque fluctuations due to interactions with the quadrupole fields at such levels.
18 pages, 6 figures. Accepted for publication in MNRAS
References in corpus (15)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Accretion to Stars with Non-dipole Magnetic Fields
- The Ups & Downs of Accreting X-Ray Pulsars: Decade-long observations with the Fermi Gamma-Ray Burst Monitor
- Insight-HXMT discovery of the highest energy CRSF from the first Galactic ultra-luminous X-ray pulsar Swift J0243.6+6124
- Hot disk of the Swift J0243.6+6124 revealed by Insight-HXMT
- Super-Eddington accretion onto the Galactic ultraluminous X-ray pulsar Swift J0243.6+6124
- Understanding the spectral and timing behavior of a newly discovered transient X-ray pulsar Swift J0243.6+6124
- Optical counterpart to Swift J0243.6+6124
- A Bayesian approach for torque modelling of BeXRB pulsars with application to super-Eddington accretors
- Insight-HXMT observations of Swift J0243.6+6124: the evolution of RMS pulse fractions at super-Eddington luminosity
- ULX pulsar Swift J0243.6+6124 observations with NuSTAR -- dominance of reflected emission in the super-Eddington state
- Comparing the Super-Eddington accretion of SMC X-3 and RX J0209.6-7427 with Swift J0243.6+6124
- Multiwavelength observations of Swift J0243.6+6124 from 2017 to 2022
- X-ray emission evolution of the Galactic ultra-luminous X-ray pulsar Swift J0243.6+6124 during the 2017-2018 outburst observed by the MAXI GSC
- Pulse Frequency Fluctuations of Persistent Accretion Powered Pulsars
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