Crust cooling of the neutron star in Aql X-1: Different depth and magnitude of shallow heating during similar accretion outbursts
arXiv:1907.07205 · doi:10.1093/mnras/stz1963
Abstract
The structure and composition of the crust of neutron stars plays an important role in their thermal and magnetic evolution, hence in setting their observational properties. One way to study the crust properties is to measure how it cools after it has been heated during an accretion outburst in a low-mass X-ray binary (LMXB). Such studies have shown that there is a tantalizing source of heat, of currently unknown origin, that is located in the outer layers of the crust and has a strength that varies between different sources and different outbursts. With the aim of understanding the mechanism behind this "shallow heating", we present Chandra and Swift observations of the neutron star LMXB Aql X-1, obtained after its bright 2016 outburst. We find that the neutron star temperature was initially much lower, and started to decrease at much later time, than observed after the 2013 outburst of the source, despite the fact that the properties of the two outbursts were very similar. Comparing our data to thermal evolution simulations, we infer that the depth and magnitude of shallow heating must have been much larger during the 2016 outburst than during the 2013 one. This implies that basic neutron star parameters that do not change between outbursts, do not play a strong role in shallow heating. Furthermore, it suggests that outbursts with a similar accretion morphology can give rise to very different shallow heating. We also discuss alternative explanations for the difference in quiescent evolution after the 2016 outburst.
10 pages, 6 figures, 2 tables, accepted to MNRAS
References in corpus (26)
- Modelling the behaviour of accretion flows in X-ray binaries
- Astrophysics Source Code Library
- An online repository of Swift/XRT light curves of GRBs
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- Models of crustal heating in accreting neutron stars
- Discovery of coherent millisecond X-ray pulsations in Aql X-1
- Spread of Matter over a Neutron-Star Surface During Disk Accretion: Deceleration of Rapid Rotation
- The behavior of subluminous X-ray transients near the Galactic center as observed using the X-ray telescope aboard Swift
- The Variable Quiescent X-ray Emission of the Neutron Star Transient XTE J1701-462
- Phase separation in the crust of accreting neutron stars
- First superburst from a classical low-mass X-ray binary transient
- Rapid Cooling of the Neutron Star in the Quiescent Super-Eddington Transient XTE J1701-462
- A strongly heated neutron star in the transient Z source MAXI J0556-332
- The return to quiescence of Aql X-1 following the 2010 outburst
- A Hard X-Ray Power-Law Spectral Cutoff in Centaurus X-4
- Diffusive nuclear burning in cooling simulations and application to new temperature data of the Cassiopeia A neutron star
- Probing the Crust of the Neutron Star in EXO 0748-676
- Outburst Morphology in the Soft X-ray Transient Aquila X-1
- The Radiative Efficiency of a Radiatively Inefficient Accretion Flow
- The donor of Aquila X-1 revealed by high angular resolution near-infrared spectroscopy
- Neutron star crust cooling in KS 1731-260: the influence of accretion outburst variability on the crustal temperature evolution
- The structure of accreted neutron star crust
- Different accretion heating of the neutron star crust during multiple outbursts in MAXI J0556-332
- Neutron star cooling and the rp process in thermonuclear X-ray bursts
- Potential cooling of an accretion-heated neutron star crust in the low-mass X-ray binary 1RXS J180408.9-342058
- Time-dependent, compositionally driven convection in the oceans of accreting neutron stars
Cited by in corpus (8)
- Experimental constraints on shallow heating in accreting neutron-star crusts
- Discovery of transition from marginally stable burning to unstable burning after a superburst in Aql X-1
- Constraining the properties of dense neutron star cores: The case of the low-mass X-ray binary HETE J1900.1-2455
- Catalog of outbursts of neutron star LMXBs
- Impact of Pycnonuclear Fusion Uncertainties on the Cooling of Accreting Neutron Star Crusts
- Crust composition and the Shallow Heat Source in KS 1731-260
- Radio pulse search from Aql X-1
- A "Hyperburst" in the MAXI J0556-332 Neutron Star: Evidence for a New Type of Thermonuclear Explosion