Neutron Star Crustal Interface Waves
arXiv:astro-ph/0410197 · doi:10.1086/426682
Abstract
The eigenfrequencies of nonradial oscillations are a powerful probe of a star's interior structure. This is especially true when there exist discontinuities such as at the neutron star (NS) ocean/crust boundary, as first noted by McDermott, Van Horn & Hansen. The interface mode associated with this boundary has subsequently been neglected in studies of stellar nonradial oscillations. We revisit this mode, investigating its properties both analytically and numerically for a simple NS envelope model. We find that it acts like a shallow surface ocean wave, but with a large radial displacement at the ocean/crust boundary due to flexing of the crust with shear modulus , the pressure. This displacement lowers the mode's frequency by a factor of in comparison to a shallow surface wave frequency on a hard surface. The interface mode may be excited on accreting or bursting NSs and future work on nonradial oscillations should consider this mode. Our work also implies an additional mode on massive and/or cold white dwarfs with crystalline cores, which may have a frequency between the f-mode and g-modes, an otherwise empty part of the frequency domain.
To appear in Astrophysical Journal, 10 pages, 5 figures
References in corpus (1)
Cited by in corpus (28)
- Physics of Neutron Star Crusts
- Thermonuclear burst oscillations
- Detection with RHESSI of high frequency X-ray oscillations in the tail of the 2004 hyperflare from SGR 1806-20
- Shear Waves and Giant Flare Oscillations from Soft Gamma-Ray Repeaters
- Towards real neutron star seismology: Accounting for elasticity and superfluidity
- Surface Modes on Bursting Neutron Stars and X-ray Burst Oscillations
- Axisymmetric oscillations of magnetic neutron stars
- Discovery of a Neutron Star Oscillation Mode During a Superburst
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. I. Theoretical framework and crust breaking
- Compositionally-driven convection in the oceans of accreting neutron stars
- The accretion rate dependence of burst oscillation amplitude
- The Energy Dependence of Neutron Star Surface Modes and X-ray Burst Oscillations
- R-Modes on Rapidly Rotating, Relativistic Stars : II. Blackbody Emission
- Evolution of the bursting-layer wave during a Type 1 X-ray burst
- Time-dependent, compositionally driven convection in the oceans of accreting neutron stars
- Magnetar QPOs and neutron star crust elasticity
- Generation of Type I X-ray Burst Oscillations by Unstable Surface Modes
- Relativistic ocean -modes during type-I X-ray bursts
- Shear and interface modes in neutron stars with pasta structures
- Shear oscillations in neutron stars and the nuclear symmetry energy
- Three-dimensional instability of flame fronts in type I X-ray bursts
- Multi-messenger Emission from Tidal Waves in Neutron Star Oceans
- Quasi-periodic oscillations during magnetar giant flares in the strangeon star model
- Superburst oscillations: ocean and crustal modes excited by Carbon-triggered Type I X-ray bursts
- Nonradial oscillations of stratified neutron stars with solid crusts: Mode characterization and tidal resonances in coalescing binaries
- The Peculiar Behavior of Burst Oscillations in the Accreting Millisecond X-ray Pulsar XTE J1814-338
- Ocean g-modes on transient neutron stars
- Topological Shell Structures in Neutron Stars: Effects on Equilibrium, Oscillations, and Gravitational-Wave Signatures