XMM-Newton observations of 1A 0535+262 in quiescence
arXiv:1311.7553 · doi:10.1051/0004-6361/201322472
Abstract
Accretion onto magnetized neutron stars is expected to be centrifugally inhibited at low accretion rates. Several sources, however, are known to pulsate in quiescence at luminosities below the theoretical limit predicted for the onset of the centrifugal barrier. The source 1A 0535+262 is one of them. Here we present the results of an analysis of a ~50 ks long XMM-Newton observation of 1A 0535+262 in quiescence. At the time of the observation, the neutron star was close to apastron, and the source had remained quiet for two orbital cycles. In spite of this, we detected a pulsed X-ray flux of ~3e-11 erg/cm2/s . Several observed properties, including the power spectrum, remained similar to those observed in the outbursts. Particularly, we have found that the frequency of the break detected in the quiescent noise power spectrum follows the same correlation with flux observed when the source is in outburst. This correlation has been associated with the truncation of the accretion disk at the magnetosphere boundary. We argue that our result, along with other arguments previously reported in the literature, suggests that the accretion in quiescence also proceeds from an accretion disk around the neutron star. The proposed scenario consistently explains the energy of the cyclotron line observed in 1A 0535+262, and the timing properties of the source including the spin frequency evolution within and between the outbursts, and the frequency of the break in power spectrum.
7 pages, 5 figures, accepted for publication in A&A
References in corpus (3)
Cited by in corpus (28)
- Propeller effect in action in the ultraluminous accreting magnetar M82 X-2
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- Cooling of Accretion-Heated Neutron Stars
- The X-ray properties of Be/X-ray pulsars in quiescence
- Cyclotron emission, absorption, and the two faces of X-ray pulsar A 0535+262
- Searching for propeller-phase ULXs in the XMM-Newton Serendipitous Source Catalogue
- Magnetic fields of neutron stars in 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
- Changes in the cyclotron line energy on short and long timescales in V 0332+53
- Broadband aperiodic variability in X-ray pulsars: accretion rate fluctuations propagating under the influence of viscous diffusion
- SRG/ART-XC and NuSTAR observations of the X-ray pulsar GRO J1008-57 in the lowest luminosity state
- Evidence for the radiation-pressure dominated accretion disk in bursting pulsar GRO J1744-28 using timing analysis
- The quiescent state of the accreting X-ray pulsar SAX J2103.5+4545
- Study of the X-ray pulsar IGR J19294+1816 with NuSTAR: detection of cyclotron line and transition to accretion from the cold disc
- NuSTAR discovery of an unusually steady long-term spin-up of the Be binary 2RXP J130159.6-635806
- Study of timing and spectral properties of the X-ray pulsar 1A 0535+262 during the giant outburst in 2020 November-December
- The low luminosity behaviour of the 4U 0115+63 Be/X-ray transient
- The Soft X-ray Spectrum of the High Mass X-Ray Binary V0332+53 in Quiescence
- Discovery of accretion-driven pulsations in the prolonged low X-ray luminosity state of the Be/X-ray transient GX 304-1
- Monitoring clumpy wind accretion in supergiant fast X-ray transients with XMM-Newto
- Awakening of the fast-spinning accreting Be/X-ray pulsar A0538-66
- Properties of the transient X-ray pulsar Swift J1816.7--1613 and its optical companion
- Discovery of X-ray pulsations in the Be/X-ray binary IGR J21343+4738
- Soft excess in the quiescent Be/X-ray pulsar RX J0812.4-3114
- Quiescent X-ray variability in the neutron star Be/X-ray transient GRO J1750-27
- X-ray spectral-timing variability of 1A 0535+262 during the 2020 giant outburst
- Recurrent low-level luminosity behaviour after a giant outburst in the Be/X-ray transient 4U 0115+63
- Constraints on the magnetic field structure in accreting compact objects from aperiodic variability