Discovery of accretion-driven pulsations in the prolonged low X-ray luminosity state of the Be/X-ray transient GX 304-1
arXiv:1811.01453 · doi:10.1051/0004-6361/201834572
Abstract
We present our Swift monitoring campaign of the slowly rotating neutron star Be/X-ray transient GX 304-1 (spin period of ~275 s) when the source was not in outburst. We found that between its type-I outbursts the source recurrently exhibits a slowly decaying low-luminosity state (with luminosities of 10^(34-35) erg/s). This behaviour is very similar to what has been observed for another slowly rotating system, GRO J1008-57. For that source, this low-luminosity state has been explained in terms of accretion from a non-ionised ('cold') accretion disk. Due to the many similarities between both systems, we suggest that GX 304-1 enters a similar accretion regime between its outbursts. The outburst activity of GX 304-1 ceased in 2016. Our continued monitoring campaign shows that the source is in a quasi-stable low-luminosity state (with luminosities a few factors lower than previously seen) for at least one year now. Using our NuSTAR observation in this state, we found pulsations at the spin period, demonstrating that the X-ray emission is due to accretion of matter onto the neutron star surface. If the accretion geometry during this quasi-stable state is the same as during the cold-disk state, then matter indeed reaches the surface (as predicted) during this latter state. We discuss our results in the context of the cold-disk accretion model.
5 pages, 2 figures, accepted for A&A Letters
References in corpus (19)
- Gaia Data Release 2. Summary of the contents and survey properties
- Estimating distances from parallaxes IV: Distances to 1.33 billion stars in Gaia Data Release 2
- High-Mass X-ray binaries in the Small Magellanic Cloud
- Giant Outbursts in Be/X-ray Binaries
- Stable accretion from a cold disc in highly magnetized neutron stars
- The X-ray properties of Be/X-ray pulsars in quiescence
- Dramatic spectral transition of X-ray pulsar GX 304-1 in low luminous state
- Discovery and Modeling of a Flattening of the Positive Cyclotron Line/Luminosity Relation in GX 304-1 with RXTE
- Suzaku view of Be/X-ray binary pulsar GX 304-1 during Type I X-ray outbursts
- On the relationship between circumstellar disc size and X-ray outbursts in Be/X-ray binaries
- Meta-stable low-level accretion rate states or neutron star crust cooling in the Be/X-ray transients V0332+53 and 4U 0115+63
- Spin-up/spin-down of neutron star in Be-X-ray binary system GX 304-1
- Possible regular phenomena in EXO 2030+375
- The low luminosity behaviour of the 4U 0115+63 Be/X-ray transient
- Discovery of X-ray pulsations in the Be/X-ray binary IGR J06074+2205
- Discovery of pulsation dropout and turn-on during the high state of the accreting X-ray pulsar LMC X-4
- Optical spectroscopy of the Be/X-ray Binary V850 Cen/GX 304-1 during faint X-ray periodical activity
- A possible phase dependent absorption feature in the transient X-ray pulsar SAX J2103.5+4545
- In-depth study of long-term variability in the X-ray emission of the Be/X-ray binary system AX J0049.4-7323
Cited by in corpus (10)
- Dramatic spectral transition of X-ray pulsar GX 304-1 in low luminous state
- X-ray emission from magnetized neutron star atmospheres at low mass accretion rates. I. Phase-averaged spectrum
- Catalog of the Galactic population of X-ray pulsars in High-mass X-ray binary systems
- Soft excess in the quiescent Be/X-ray pulsar RX J0812.4-3114
- SRG/ART-XC, Swift, NICER and NuSTAR study of different states of the transient X-ray pulsar MAXI J0903-531
- Recurrent low-level luminosity behaviour after a giant outburst in the Be/X-ray transient 4U 0115+63
- First characterization of a new High Mass X-ray Binary in LMC eRASSU J050810.4660653 with SRG/ART-XC, NuSTAR and Swift
- Monte-Carlo simulations on possible collimation effects of outflows to fan-beamed emission of ultraluminous accreting X-ray pulsars
- Long-term spin-down and low luminosity regime in the Be/X-ray binary pulsar GX 304-1
- Multiwavelength study of 1eRASS J085039.9-421151 with eROSITA NuSTAR and X-shooter