Models of crustal heating in accreting neutron stars
arXiv:0708.3996 · doi:10.1051/0004-6361:20078578
Abstract
Heating associated with non-equilibrium nuclear reactions in accreting neutron-star crusts is reconsidered, taking into account suppression of neutrino losses demonstrated recently by Gupta et al. Two initial compositions of the nuclear burning ashes, A=56 and A=106, are considered. Dependence of the integrated crustal heating on uncertainties plaguing pycnonuclear reaction models is studied. One-component plasma approximation is used, with compressible liquid-drop model of Mackie and Baym to describe nuclei. Evolution of a crust shell is followed from 10^8 g/cm^3 to 10^(13.6) g/cm^3 The integrated heating in the outer crust agrees nicely with results of self-considtent multicomponent plasma simulations of Gupta et al.; their results fall between our curves obtained for A=56 and A=106. Total crustal heat per one accreted nucleon ranges between 1.5 MeV to 1.9 MeV for A=106 and A=56, respectively. The value of total crustal heat per nucleon depends weakly on the presence of pycnonuclear reactions at densities 10^(12)-10^(13) g/cm^3. Remarkable insensitivity of the total crustal heat on the details of the distribution of nuclear processes in accreted crust is explained.
8 pages, 5 figures, Submitted to A&A
References in corpus (3)
Cited by in corpus (75)
- Dependence of X-Ray Burst Models on Nuclear Reaction Rates
- Rejecting proposed dense-matter equations of state with quiescent low-mass X-ray binaries
- Possible Resonances in the 12C + 12C Fusion Rate and Superburst Ignition
- Cooling of Accretion-Heated Neutron Stars
- Neutron star equation of state: QMF modeling and applications
- The Variable Quiescent X-ray Emission of the Neutron Star Transient XTE J1701-462
- Electron-ion scattering in dense multi-component plasmas: application to the outer crust of an accreting neutron star
- Rapid Cooling of the Neutron Star in the Quiescent Super-Eddington Transient XTE J1701-462
- A lower limit on the heat capacity of the neutron star core
- Fusion of neutron rich oxygen isotopes in the crust of accreting neutron stars
- Neutron drip transition in accreting and nonaccreting neutron star crusts
- Statistical theory of thermal evolution of neutron stars - II. Limitations on direct Urca threshold
- Thermal emission of neutron stars with internal heaters
- Neutron reactions in accreting neutron stars: a new pathway to efficient crust heating
- Heat blanketing envelopes of neutron stars
- Chandra and Swift observations of the quasi-persistent neutron star transient EXO 0748-676 back to quiescence
- Thermal evolution of relativistic hyperonic compact stars with calibrated equations of state
- Periodic Activities of Repeating Fast Radio Bursts from Be/X-ray Binary Systems
- Thermal states of neutron stars with a consistent model of interior
- Chandra studies of the globular cluster 47 Tucanae: A deeper X-ray source catalogue, five new X-ray counterparts to millisecond radio pulsars, and new constraints to r-mode instability window
- Neutron star crust cooling in KS 1731-260: the influence of accretion outburst variability on the crustal temperature evolution
- Crust structure and thermal evolution of neutron stars in soft X-ray transients
- Thermodynamically consistent equation of state for an accreted neutron star crust
- A cold neutron star in the transient low-mass X-ray binary HETE J1900.1-2455 after 10 years of active accretion
- X-ray Spectral Identification of Three Candidate Quiescent Low-Mass X-ray Binaries in the Globular Cluster NGC 6304
- Gravitational waves from mountains in newly born millisecond magnetars
- Different accretion heating of the neutron star crust during multiple outbursts in MAXI J0556-332
- Heat release in accreting neutron stars
- The Swift capture of a long X-ray burst from XTE J1701-407
- Experimental constraints on shallow heating in accreting neutron-star crusts
- Deep crustal heating for realistic compositions of thermonuclear ashes
- Deformation and crustal rigidity of rotating neutron stars
- The new intermediate long bursting source XTE J1701-407
- Time-dependent, compositionally driven convection in the oceans of accreting neutron stars
- Effects of Nuclear Equation of State on Type-I X-ray Bursts: Interpretation of the X-ray Bursts from GS 1826-24
- Role of the symmetry energy on the neutron-drip transition in accreting and nonaccreting neutron stars
- -decay of V and its Role in Cooling Accreted Neutron Star Crusts
- Thermal evolution of neutron stars in soft X-ray transients with thermodynamically consistent models of the accreted crust
- Neutrino luminosities and heat capacities of neutron stars in analytic form
- Crust cooling of the neutron star in Aql X-1: Different depth and magnitude of shallow heating during similar accretion outbursts
- Impacts of the direct URCA and Superfluidity inside a Neutron Star on Type-I X-Ray Bursts and X-Ray Superbursts
- Gravitational radiation from thermal mountains on accreting neutron stars: sources of temperature non-axisymmetry
- Accreting neutron stars: heating of the upper layers of the inner crust
- Fast neutrino cooling in the accreting neutron star MXB 1659-29
- Partially accreted crusts of neutron stars
- Multi-messenger Emission from Tidal Waves in Neutron Star Oceans
- Thermal luminosity degeneracy of magnetized neutron stars with and without hyperon cores
- The Impacts of Neutron-Star Structure and Base Heating on Type I X-Ray Bursts and Code Comparison
- The cooling, mass and radius of the neutron star in EXO 0748-676 in quiescence with XMM-Newton
- Fundamental physics with neutron stars
- Accreting neutron stars from the nuclear energy-density functional theory. II. Equation of state and global properties
- Accreting neutron stars: composition of the upper layers of the inner crust
- Unexpected late-time temperature increase observed in two neutron star crust cooling sources -- XTE~J1701-462 and EXO~0748-676
- Quiescent luminosities of accreting neutron stars with different equation of states
- The Impact of Neutron Transfer Reactions on Heating and Cooling of Accreted Neutron Star Crusts
- Variable quiescent state for the neutron-star X-ray transient SAX J1750.8-2900: not such a hot neutron star after all?
- Soft excess in the quiescent Be/X-ray pulsar RX J0812.4-3114
- Nonequilibrium thermodynamics of accreted neutron-star crust
- Impact of Pycnonuclear Fusion Uncertainties on the Cooling of Accreting Neutron Star Crusts
- Cooling of neutron stars in soft X-ray transients with realistic crust composition
- Exploring jet-launching conditions for SFXTs
- Gapless neutron superfluidity in the crust of the accreting neutron stars KS 1731-260 and MXB 1659-29
- Gravitational wave asteroseismology of accreting neutron stars in a steady state
- Plasma cutoff and enhancement of radiative transitions in dense stellar matter
- Constraining Accreted Neutron Star Crust Shallow Heating with the Inferred Depth of Carbon Ignition in X-ray Superbursts
- Quiescent luminosities of transiently accreting neutron stars with neutrino heating due to charged pion decay
- Equation of state and composition of the inner crust of an accreting neutron star: multicomponent model
- Crust composition and the Shallow Heat Source in KS 1731-260
- IGR J17480-2446: a new class of accreting binaries?
- A solution to the tension of burning on neutron stars and nuclear physics
- Net reaction rate and neutrino emissivity for the Urca process in departure from chemical equilibrium
- Return of the Clocked Burster: Exceptionally Short Recurrence Time in GS 1826-238
- Layers of electron captures in the crust of accreting neutron stars
- A "Hyperburst" in the MAXI J0556-332 Neutron Star: Evidence for a New Type of Thermonuclear Explosion
- A post-hypercritical accretion small-scale dynamo in newborn neutron stars