Latitudinal Shear Instabilities during Type I X-ray Bursts
arXiv:astro-ph/0505067 · doi:10.1086/431731
Abstract
Coherent oscillations have been observed during Type I X-ray bursts from 14 accreting neutron stars in low mass X-ray binaries, providing important information about their spin frequencies. However, the origin of the brightness asymmetry on the neutron star surface producing these oscillations is still not understood. We study the stability of a zonal shearing flow on the neutron star surface using a shallow water model. We show that differential rotation of >2% between pole and equator, with the equator spinning faster than the poles, is unstable to hydrodynamic shear instabilities. The unstable eigenmodes have properties well-matched to burst oscillations: low azimuthal wavenumber m, wave speeds 1 or 2% below the equatorial spin rate, and e-folding times close to a second. Instability is related to low frequency buoyantly driven r-modes that have a mode frequency within the range of rotation frequencies in the differentially rotating shell. We discuss the implications for burst oscillations. Growth of shear instabilities may explain the brightness asymmetry in the tail of X-ray bursts, although some fine tuning of the level of differential rotation and a spin frequency near 300 Hz are required in order for the fastest growing mode to have m=1. If shear instabilities are to operate during a burst, temperature contrasts of 30% across the star must be created during ignition and spreading of the flash.
To appear in ApJ (12 pages, 11 figures)
References in corpus (10)
- Nuclear-Powered Millisecond Pulsars and the Maximum Spin Frequency of Neutron Stars
- X-ray Bursts from the Accreting Millisecond Pulsar XTE J1814-338
- Constraints on Neutron Star Parameters from Burst Oscillation Light Curves of the Accreting Millisecond Pulsar XTE J1814-338
- Discovery of the Neutron Star Spin Frequency in EXO 0748-676
- Surface Modes on Bursting Neutron Stars and X-ray Burst Oscillations
- The Effect of Neutron Star Rotation on the Properties of Thermonuclear X-ray Bursts
- Surface r Modes and Burst Oscillations of Neutron Stars
- Unstable Nonradial Oscillations on Helium Burning Neutron Stars
- The oscillation and stability of differentially rotating spherical shells: The initial value problem
- Differential Rotation in Weakly-Magnetized Neutron Star Atmospheres
Cited by in corpus (17)
- Thermonuclear burst oscillations
- Measurement of neutron star parameters: a review of methods for low-mass X-ray binaries
- Observatory science with eXTP
- Implications of burst oscillations from the slowly rotating accreting pulsar IGR 17480-2446 in the globular cluster Terzan 5
- Type I X-ray bursts and burst oscillations in the accreting millisecond X-ray pulsar IGR J17511-3057
- The Latitude of Type I X-Ray Burst Ignition on Rapidly Rotating Neutron Stars
- The energy dependence of burst oscillations from the accreting millisecond pulsar XTE J1814-338
- Discovery of burst oscillations in the intermittent accretion-powered millisecond pulsar HETE J1900.1-2455
- Evolution of the bursting-layer wave during a Type 1 X-ray burst
- Magnetic burial and the harmonic content of millisecond oscillations in thermonuclear X-ray bursts
- An unusual precursor burst with oscillations from SAX J1808.4-3658
- Thermonuclear X-ray bursts from the 401 Hertz accreting pulsar IGR J17498-2921: indication of burning in confined regions
- Relativistic ocean -modes during type-I X-ray bursts
- Generation of Type I X-ray Burst Oscillations by Unstable Surface Modes
- Three-dimensional instability of flame fronts in type I X-ray bursts
- The Peculiar Behavior of Burst Oscillations in the Accreting Millisecond X-ray Pulsar XTE J1814-338
- X-ray views of neutron star low-mass X-ray binaries