A timing study of MAXI J1820+070 based on Swift/XRT and NICER monitoring in 2018/19
arXiv:1912.07625 · doi:10.3847/1538-4357/ab64ef
Abstract
We present a detailed timing analysis of the bright black hole X-ray binary MAXI J1820+070 (ASASSN-18ey), during its first detected outburst lasting from March 2018 until October 2019 based on Swift/XRT window timing mode observations, corresponding UVOT data and NICER observations. The light curves clearly show four outbursts, with the source remaining in the hard state during its first outburst, while the rise of the second outburst corresponds with the transition to the soft state. A similar double outburst of GX339-4 has been observed in 2004. Here it is followed by two hard-state only outbursts. In many observations the power density spectra showed type-C quasi-periodic oscillations with characteristic frequencies below 1 Hz, which suggests that the source stayed in a state of low effective accretion for large parts of its outburst. The absence of other types of quasi-periodic oscillations hinders a precise determination of the state transitions, but from combining NICER and Swift/XRT data, we find that MAXI J1820+070 went from the hard-intermediate to the soft state in less than one day. The covariance ratios derived from NICER data show an increase towards lower energies, which indicate that the source should make a transition to the soft state. This transition finally took place, after MAXI J1820+070 stayed in the hard state at rather constant luminosity for about 116 days. The steepness of the increase of the covariance ratios is not correlated with the amount of rms variability and it does not show a monotonic evolution along the outburst.
15 pages (+20 pages appendix), 11 figures, accepted by ApJ
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Cited by in corpus (12)
- Measuring fundamental jet properties with multi-wavelength fast timing of the black hole X-ray binary MAXI J1820+070
- NICER observations reveal that the X-ray transient MAXI J1348-630 is a Black Hole X-ray binary
- Near-infrared emission lines trace the state-independent accretion disc wind of the black hole transient MAXI J1820+070
- Physical origin of the nonphysical spin evolution of MAXI J1820+070
- The evolution of the broadband temporal features observed in the black-hole transient MAXI J1820+070 with Insight-HXMT
- NuSTAR monitoring of MAXI J1348-630: evidence of high density disc reflection
- A timing-based estimate of the spin of the black hole in MAXI J1820+070
- The Evolution of Rapid Optical/X-ray Timing Correlations in the Initial Hard State of MAXI J1820+070
- Observations of the Disk/Jet Coupling of MAXI J1820+070 During its Descent to Quiescence
- A broadband view on microquasar MAXI J1820+070 during the 2018 outburst
- Accretion Scenario of MAXI J1820+070 during 2018 Outbursts with Multi-mission Observations
- Large optical modulations during 2018 outburst of MAXI J1820+070 reveal evolution of warped accretion disc through X-ray state change