Strong neutrino cooling by cycles of electron capture and decay in neutron star crusts
arXiv:1312.2513 · doi:10.1038/nature12757
Abstract
The temperature in the crust of an accreting neutron star, which comprises its outermost kilometer, is set by heating from nuclear reactions at large densities, neutrino cooling, and heat transport from the interior. The heated crust has been thought to affect observable phenomena at shallower depths, such as thermonuclear bursts in the accreted envelope. Here we report that cycles of electron capture and its inverse, decay, involving neutron-rich nuclei at a typical depth of about 150 m, cool the outer neutron star crust by emitting neutrinos while also thermally decoupling the surface layers from the deeper crust. This Urca mechanism has been studied in the context of white dwarfs and Type Ia supernovae, but hitherto was not considered in neutron stars, because previous models computed the crust reactions using a zero-temperature approximation and assumed that only a single nuclear species was present at any given depth. This thermal decoupling means that X-ray bursts and other surface phenomena are largely independent of the strength of deep crustal heating. The unexpectedly short recurrence times, of the order of years, observed for very energetic thermonuclear superbursts are therefore not an indicator of a hot crust, but may point instead to an unknown local heating mechanism near the neutron star surface.
15 pages with 5 figures. Nature advance online publication, December 1, 2013
References in corpus (8)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- Further explorations of Skyrme-Hartree-Fock-Bogoliubov mass formulas. XII: Stiffness and stability of neutron-star matter
- Models of crustal heating in accreting neutron stars
- Possible Resonances in the 12C + 12C Fusion Rate and Superburst Ignition
- Superburst Models for Neutron Stars with Hydrogen and Helium-Rich Atmospheres
- Superfluid Response and the Neutrino Emissivity of Neutron Matter
- The structure of accreted neutron star crust
Cited by in corpus (73)
- Nuclear ground-state masses and deformations: FRDM(2012)
- Discrepancy between experimental and theoretical -decay rates resolved from first principles
- Dependence of X-Ray Burst Models on Nuclear Reaction Rates
- Thermonuclear X-ray bursts
- Phases of dense matter in compact stars
- Nuclear Physics of the Outer Layers of Accreting Neutron Stars
- Cooling of Accretion-Heated Neutron Stars
- The Sensitivity of Core-Collapse Supernovae to Nuclear Electron Capture
- Detecting gravitational waves from mountains on neutron stars in the Advanced Detector Era
- Reaction rates and transport in neutron stars
- Astrophysical weak-interaction rates for selected and nuclei
- Observatory science with eXTP
- Nuclear Reactions in the Crusts of Accreting Neutron Stars
- A strong shallow heat source in the accreting neutron star MAXI J0556-332
- Electron capture in stars
- Dependence of X-ray Burst Models on Nuclear Masses
- A strongly heated neutron star in the transient Z source MAXI J0556-332
- Influence of Nuclear Reaction Rate Uncertainties on Neutron Star Properties Extracted From X-ray Burst Model-Observation Comparisons
- Precision Mass Measurement of Cr: Nuclear Collectivity towards the \emph{N}=40 Island of Inversion
- High precision nuclear mass predictions towards a hundred kilo-electron-volt accuracy
- Probing the Crust of the Neutron Star in EXO 0748-676
- Horizons: Nuclear Astrophysics in the 2020s and Beyond
- Crustal heating in accreting neutron stars from the nuclear energy-density functional theory. I. Proton shell effects and neutron-matter constraint
- Thermonuclear Bursts with Short Recurrence Times from Neutron Stars Explained by Opacity-Driven Convection
- Urca cooling pairs in the neutron star ocean and their effect on superbursts
- Towards a Unified Quark-Hadron Matter Equation of State for Applications in Astrophysics and Heavy-Ion Collisions
- Reaction Rate and Composition Dependence of the Stability of Thermonuclear Burning on Accreting Neutron Stars
- Nuclear Mass Measurements Map the Structure of Atomic Nuclei and Accreting Neutron Stars
- Time-of-flight mass measurements of neutron-rich chromium isotopes up to N = 40 and implications for the accreted neutron star crust
- Mass measurement of 56Sc reveals a small A=56 odd-even mass staggering, implying a cooler accreted neutron star crust
- Fast neutrino cooling of nuclear pasta in neutron stars: molecular dynamics simulations
- Stellar electron capture rates on neutron-rich nuclei and their impact on core-collapse
- A new study of the and shell gap for Ti and V by the first high-precision MRTOF mass measurements at BigRIPS-SLOWRI
- Urca Cooling in Neutron Star Crusts and Oceans: Effects of Nuclear Excitations
- Constraints on Bygone Nucleosynthesis of Accreting Neutron Stars
- Modification of magicity towards the dripline and its impact on electron-capture rates for stellar core-collapse
- Heat release in accreting neutron stars
- Trends in Nuclear Astrophysics
- Experimentally well-constrained masses of P and S: Implications for studies of explosive binary systems
- Carbon production on accreting neutron stars in a new regime of stable nuclear burning
- -decay of V and its Role in Cooling Accreted Neutron Star Crusts
- Nuclear Weak Rates and Nuclear Weak Processes in Stars
- Gamow-Teller strengths from unstable O via the reaction in inverse kinematics
- The imprint of carbon combustion on a superburst from the accreting neutron star 4U 1636-536
- On the dependence of X-ray burst rate on accretion and spin rate
- Impacts of the direct URCA and Superfluidity inside a Neutron Star on Type-I X-Ray Bursts and X-Ray Superbursts
- Finite-temperature electron-capture rates for neutron-rich nuclei around N=50 and effects on core-collapse supernovae simulations
- Sites That Can Produce Left-Handed Amino Acids in the Supernova Neutrino Amino Acid Processing Model
- The Thermal Stability of Helium Burning on Accreting Neutron Stars
- Beta-decay properties of neutron-rich Ca, Ti, and Cr isotopes
- Neutron transfer reactions in accreting neutron stars
- The cooling, mass and radius of the neutron star in EXO 0748-676 in quiescence with XMM-Newton
- The Impacts of Neutron-Star Structure and Base Heating on Type I X-Ray Bursts and Code Comparison
- Description of Nb stellar electron-capture rates by the Projected Shell Model
- Accreting neutron stars: composition of the upper layers of the inner crust
- Fundamental physics with neutron stars
- First direct measurement constraining the Ar(,p)K reaction cross section for mixed hydrogen and helium burning in accreting neutron stars
- The Impact of Neutron Transfer Reactions on Heating and Cooling of Accreted Neutron Star Crusts
- Evolution of Urca Pairs in the Crusts of Highly Magnetized Neutron Stars
- Impact of Pycnonuclear Fusion Uncertainties on the Cooling of Accreting Neutron Star Crusts
- Improved Nuclear Physics Near Refines Urca Neutrino Luminosities in Accreted Neutron Star Crusts
- Quiescent Light Curve of Accreting Neutron Star MAXI J0556-332
- A Vision for the Science of Rare Isotopes
- Constraining Accreted Neutron Star Crust Shallow Heating with the Inferred Depth of Carbon Ignition in X-ray Superbursts
- Crust composition and the Shallow Heat Source in KS 1731-260
- From dripline to dripline: Nuclear astrophysics in the laboratory
- Net reaction rate and neutrino emissivity for the Urca process in departure from chemical equilibrium
- Weak interaction rates of -shell Urca pairs in stellar environment using a shell-model approach
- Higher forbidden unique decay transitions and shell-model interpretation
- Nuclear astrophysics
- The Great Wall: Urca Cooling Layers in the Accreted NS Crust
- Urca Nuclide Production in Type-I X-ray Bursts and Implications for Nuclear Physics Studies
- A "Hyperburst" in the MAXI J0556-332 Neutron Star: Evidence for a New Type of Thermonuclear Explosion