The Effect of Neutron Star Rotation on the Properties of Thermonuclear X-ray Bursts
arXiv:astro-ph/0310726 · doi:10.1086/420812
Abstract
Previously, observations with the Rossi X-ray Timing Explorer showed that millisecond oscillations occur preferentially in thermonuclear X-ray bursts with photospheric radius expansion from sources rotating near 600 Hz, while they occur with equal likelihood in X-ray bursts with and without radius expansion for sources rotating near 300 Hz. With a larger sample of data than in previous studies, we find that the detectability of the oscillations is not directly determined by the properties of the X-ray bursts. Instead, we find that (1) the oscillations are observed almost exclusively when the accretion rate onto the neutron star is high, but that (2) radius expansion is only observed at high accretion rates from the 600 Hz sources, whereas it occurs only at low accretion rates in the 300 Hz sources. The persistent millisecond pulsars provide the only apparent exceptions to these trends. The first result might be explained if the oscillation amplitudes are attenuated at low accretion rates by an extended electron corona. The second result indicates that the rotation period of the neutron star determines how the burst properties vary with accretion rate, possibly through the differences in the effective surface gravity or the strength of the Coriolis force.
5 pages, including 2 figures. To appear in 20 June 2004 issue of ApJ. Added references and made minor changes to discussion
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Cited by in corpus (30)
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- Measuring the neutron star equation of state using X-ray timing
- Thermonuclear burst oscillations
- X-ray binaries
- The Multi-INstrument Burst ARchive (MINBAR)
- Thermonuclear X-ray bursts
- Observational Constraints on Neutron Star Masses and Radii
- Accreting Millisecond X-Ray Pulsars
- The influence of accretion geometry on the spectral evolution during thermonuclear (type-I) X-ray bursts
- Surface Modes on Bursting Neutron Stars and X-ray Burst Oscillations
- Turbulent Mixing in the Surface Layers of Accreting Neutron Stars
- The Latitude of Type I X-Ray Burst Ignition on Rapidly Rotating Neutron Stars
- The cooling phase of Type-I X-ray bursts in 4U 1636-53
- A very rare triple-peaked type-I X-ray burst in the low-mass X-ray binary 4U 1636-53
- A Soft X-Ray Spectral Episode for the Clocked Burster, GS 1826-24 as Measured by Swift and NuSTAR
- AstroSat/LAXPC detection of milli-second phenomena in 4U 1728-34
- The energy dependence of burst oscillations from the accreting millisecond pulsar XTE J1814-338
- Probing the effects of a thermonuclear X-ray burst on the neutron star accretion flow with NuSTAR
- Superexpansion as a possible probe of accretion in 4U 1820-30
- The accretion rate dependence of burst oscillation amplitude
- Discovery of burst oscillations in the intermittent accretion-powered millisecond pulsar HETE J1900.1-2455
- The X-ray bursts of XTE J1739-285: a NICER sample
- Latitudinal Shear Instabilities during Type I X-ray Bursts
- Generation of Type I X-ray Burst Oscillations by Unstable Surface Modes
- Thermonuclear X-ray bursts from LMXB 4U 1636536 observed with AstroSat
- Nuclear-powered X-ray millisecond pulsars
- The Influence of Stellar Spin on Ignition of Thermonuclear Runaways
- Burning in the tail: implications for a burst oscillation model
- The impact of neutron star spin on X-ray spectra
- A search for the superburst oscillation signal in the regular thermonuclear bursts of 4U 1636-536