Theory and Observations of Type I X-Ray Bursts from Neutron Stars
arXiv:astro-ph/0001135 · doi:10.1063/1.1291736
Abstract
I review our understanding of the thermonuclear instabilities on accreting neutron stars that produce Type I X-Ray bursts. I emphasize those observational and theoretical aspects that should interest the broad audience of this meeting. The easily accessible timescales of the bursts (durations of tens of seconds and recurrence times of hours to days) allow for a very stringent comparison to theory. The largest discrepancy (which was found with EXOSAT observations) is the accretion rate dependence of the Type I burst properties. Bursts become less frequent and energetic as the global accretion rate increases, just the opposite of what the spherical theory predicts. I present a resolution of this issue by taking seriously the observed dependence of the burning area on the global accretion rate, which implies that as the accretion rate increases, the accretion rate per unit area decreases. This resurrects the unsolved problem of knowing where the freshly accreted material accumulates on the star, equally relevant to the likely signs of rotation during the bursts summarized by Swank at this meeting. I close by highlighting the Type I bursts from GS 1826-238 that were found with BeppoSAX and RXTE. Their energetics, recurrence times and temporal profiles clearly indicate that hydrogen is being burned during these bursts, most likely by the rapid-proton (rp) process.
10 pages, 2 figures. to appear in "Cosmic Explosions", proceeding of the 10th Annual October Astrophysics Conference (ed. S.S. Holt and W. W. Zhang)
Cited by in corpus (38)
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- A Remarkable Three Hour Thermonuclear Burst From 4U 1820-30
- Long Type I X-ray Bursts and Neutron Star Interior Physics
- Rotational Evolution During Type I X-Ray Bursts
- X-ray bursts at extreme mass accretion rates from GX 17+2
- Variability in the Thermal Emission from Accreting Neutron Star Transients
- Periodic Thermonuclear X-ray Bursts from GS 1826-24 and the Fuel Composition as a Function of Accretion Rate
- Models of Type I X-Ray Bursts in 4U 1820-30
- Models of Type I X-ray Bursts from GS 1826-24: A Probe of rp-Process Hydrogen Burning
- Nucleosynthesis in Type I X-ray Bursts
- Millihertz Quasi-Periodic Oscillations from Marginally Stable Nuclear Burning on an Accreting Neutron Star
- Millisecond Oscillations and Photospheric Radius Expansion in Thermonuclear X-Ray Bursts
- Millihertz quasi-periodic oscillations and thermonuclear bursts from Terzan 5: A showcase of burning regimes
- Eddington-limited X-ray Bursts as Distance Indicators. II. Possible Compositional Effects in Bursts from 4U 1636-536
- Measurement of neutron star parameters: a review of methods for low-mass X-ray binaries
- Influence of Nuclear Reaction Rate Uncertainties on Neutron Star Properties Extracted From X-ray Burst Model-Observation Comparisons
- Consistent Modeling of GS 1826-24 X-ray Bursts for Multiple Accretion Rates Demonstrates the Possibility to Constrain rp-process Reaction Rates
- Turbulent Mixing in the Surface Layers of Accreting Neutron Stars
- Horizons: Nuclear Astrophysics in the 2020s and Beyond
- Multidimensional Modeling of Type I X-ray Bursts. I. Two-Dimensional Convection Prior to the Outburst of a Pure Helium Accretor
- Chandra and RXTE Spectra of the Burster GS 1826-238
- The Effect of Neutron Star Rotation on the Properties of Thermonuclear X-ray Bursts
- Multidimensional Modeling of Type I X-ray Bursts. II. Two-Dimensional Convection in a Mixed H/He Accretor
- The X-ray Binary GRS 1741.9-2853 in Outburst and Quiescence
- Long tails on thermonuclear X-ray bursts from neutron stars: a signature of inward heating?
- The cooling rate of neutron stars after thermonuclear shell flashes
- Signature of the presence of a third body orbiting around XB 1916-053
- Non-Detection of Gravitationally Redshifted Absorption Lines in the X-ray Burst Spectra of GS 1826-24
- Superbursts and long bursts as surface phenomenon of compact objects
- Nuclear-powered X-ray millisecond pulsars
- The study of multi-peaked type-I X-ray bursts in the neutron-star low mass X-ray binary 4U 1636536 with RXTE
- Ignition column depths of helium-rich thermonuclear bursts from 4U 1728-34
- The Impacts of Neutron-Star Structure and Base Heating on Type I X-Ray Bursts and Code Comparison
- Single X-ray Bursts and the Model of a Spreading Layer of Accreting Matter over the Neutron Star Surface
- Thermonuclear X-ray bursts detected in Cyg X-2 using AstroSat/LAXPC
- Flux decay during thermonuclear X-ray bursts analysed with the dynamic power-law index method
- An approach to constrain models of accreting neutron stars with the use of an equation of state
- Urca Nuclide Production in Type-I X-ray Bursts and Implications for Nuclear Physics Studies