Testing the deep-crustal heating model using quiescent neutron-star very-faint X-ray transients and the possibility of partially accreted crusts in accreting neutron stars
arXiv:1208.4273 · doi:10.1093/mnras/stt599
Abstract
It is assumed that accreting neutron stars (NSs) in LMXBs are heated due to the compression of the existing crust by the accreted matter which gives rise to nuclear reactions in the crust. It has been shown that most of the energy is released deep in the crust by pycnonuclear reactions involving low-Z elements. We discuss if NSs in very-faint X-ray transients (VFXTs; those which have peak X-ray luminosities < 1E36 erg/s) can be used to test this model. Unfortunately we cannot conclusively answer this because of the large uncertainties in our estimates of the accretion rate history of those VFXTs, both the short-term (less than a few tens of thousands of years) and the one throughout their lifetime. The latter is important because it can be so low that the NSs might not have accreted enough matter to become massive enough that enhanced cooling processes become active. Therefore, they could be relatively warm compared to other systems for which such enhanced cooling processed have been inferred. However, the amount of matter can also not be too low because then the crust might not have been replaced significantly by accreted matter and thus a hybrid crust of partly accreted and partly original, albeit further compressed matter, might be present. This would inhibit the full range of pycnonuclear reactions to occur and thus very likely decreasing the amount of heat deposited in the crust. Furthermore, better understanding is needed how a hybrid crust affects other properties such as the thermal conductivity. We also show that some individual NS LMXBs might have hybrid crusts as well as the NSs in HMXBs. This has to be taken into account when studying the cooling properties of those systems when they are in quiescence. We show that the VFXTs are likely not the dominate transients that are associated with the brightest low-luminosity X-ray sources in globular clusters as was hypothesized.
Accepted for publication in MNRAS main journal
References in corpus (21)
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Dense Matter in Compact Stars: Theoretical Developments and Observational Constraints
- Models of crustal heating in accreting neutron stars
- 2D Cooling of Magnetized Neutron Stars
- Six new candidate ultracompact X-ray binaries
- Cooling of the quasi-persistent neutron star X-ray transients KS 1731-260 and MXB 1659-29
- Faint X-ray Sources in the Globular Cluster Terzan 5
- The behavior of subluminous X-ray transients near the Galactic center as observed using the X-ray telescope aboard Swift
- Cooling of the crust in the neutron star low-mass X-ray binary MXB 1659-29
- The Variable Quiescent X-ray Emission of the Neutron Star Transient XTE J1701-462
- Thermal states of coldest and hottest neutron stars in soft X-ray transients
- Rapid Cooling of the Neutron Star in the Quiescent Super-Eddington Transient XTE J1701-462
- A four-year XMM-Newton/Chandra monitoring campaign of the Galactic Centre: analysing the X-ray transients
- Fusion of neutron rich oxygen isotopes in the crust of accreting neutron stars
- XMMU J174716.1-281048: a "quasi-persistent" very faint X-ray transient?
- Neutron reactions in accreting neutron stars: a new pathway to efficient crust heating
- Chandra X-ray Sources in the Collapsed-Core Globular Cluster M30 (NGC 7099)
- Chandra and Swift observations of the quasi-persistent neutron star transient EXO 0748-676 back to quiescence
- XMM-Newton observations of four high mass X-ray binaries and IGR J17348-2045
- X-ray Spectral Identification of Three Candidate Quiescent Low-Mass X-ray Binaries in the Globular Cluster NGC 6304
- Pairing and the Cooling of Neutron Stars
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- Dense Nuclear Matter Equation of State from Heavy-Ion Collisions
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- The neutron star transient and millisecond pulsar in M28: from sub-luminous accretion to rotation-powered quiescence
- Nuclear Physics of the Outer Layers of Accreting Neutron Stars
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- Rapid neutrino cooling in the neutron star MXB 1659-29
- Discovery of the Third Transient X-ray Binary in the Galactic Globular Cluster Terzan 5
- The X-ray properties of Be/X-ray pulsars in quiescence
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- A Hard X-Ray Power-Law Spectral Cutoff in Centaurus X-4
- Probing the Crust of the Neutron Star in EXO 0748-676
- Thermal emission of neutron stars with internal heaters
- Crustal heating in accreting neutron stars from the nuclear energy-density functional theory. I. Proton shell effects and neutron-matter constraint
- Thermal evolution and quiescent emission of transiently accreting neutron stars
- Heat blanketing envelopes of neutron stars
- Daily, multiwavelength Swift monitoring of the neutron star low-mass X-ray binary Cen X-4: evidence for accretion and reprocessing during quiescence
- Continued Neutron Star Crust Cooling of the 11 Hz X-Ray Pulsar in Terzan 5: A Challenge to Heating and Cooling Models?
- Constraining the properties of neutron star crusts with the transient low-mass X-ray binary Aql X-1
- Crust structure and thermal evolution of neutron stars in soft X-ray transients
- Meta-stable low-level accretion rate states or neutron star crust cooling in the Be/X-ray transients V0332+53 and 4U 0115+63
- A cooling neutron star crust after recurrent outbursts: Modelling the accretion outburst history of Aql X-1
- Recycled pulsars with multipolar magnetospheres from accretion-induced magnetic burial
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- A low-level accretion flare during the quiescent state of the neutron-star X-ray transient SAX J1750.8-2900
- Continued cooling of the accretion-heated neutron star crust in the X-ray transient IGR J17480-2446 located in the globular cluster Terzan 5
- Deep crustal heating for realistic compositions of thermonuclear ashes
- Potential cooling of an accretion-heated neutron star crust in the low-mass X-ray binary 1RXS J180408.9-342058
- The quiescent state of the accreting X-ray pulsar SAX J2103.5+4545
- New possible class of neutron stars: hot and fast non-accreting rotators
- Cooling of neutron stars in soft X-ray transients
- 2S1553-542: a Be/X-ray binary pulsar on the far side of the Galaxy
- Magnetothermal Evolution of Neutron Stars with Emphasis to Radio Pulsars
- Thermal evolution of neutron stars in soft X-ray transients with thermodynamically consistent models of the accreted crust
- The low luminosity behaviour of the 4U 0115+63 Be/X-ray transient
- Crust cooling of the neutron star in Aql X-1: Different depth and magnitude of shallow heating during similar accretion outbursts
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- The Soft X-ray Spectrum of the High Mass X-Ray Binary V0332+53 in Quiescence
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- Millisecond oscillations in the bursting flux of SAX J1810.8-2609
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- Accreting neutron stars: composition of the upper layers of the inner crust
- Constraining the duty cycle of transient low-mass X-ray binaries through simulations
- Quiescent X-ray variability in the neutron star Be/X-ray transient GRO J1750-27
- Cooling of neutron stars in soft X-ray transients with realistic crust composition
- Swift/XRT, Chandra and XMM-Newton observations of IGR J17091-3624 as it returns into quiescence
- The quiescent counterpart of the peculiar X-ray burster SAX J2224.9+5421
- A "Hyperburst" in the MAXI J0556-332 Neutron Star: Evidence for a New Type of Thermonuclear Explosion