Three evolutionary paths for magnetar oscillations
arXiv:1307.7078 · doi:10.1093/mnras/stu017
Abstract
Quasi-periodic oscillations have been seen in the light curves following several magnetar giant flares. These oscillations are of great interest as they probably provide our first ever view of the normal modes of oscillation of neutron stars. The state-of-the-art lies in the study of the oscillations of elastic-magnetic stellar models, mainly with a view to relating the observed frequencies to the structure and composition of the star itself. We advance this programme by considering several new physical mechanisms that are likely to be important for magnetar oscillations. These relate to the superfluid/superconducting nature of the stellar interior, and the damping of the modes, both through internal dissipation mechanisms and the launching of waves into the magnetosphere. We make simple order-of-magnitude estimates to show that both the frequencies and the damping time of magnetar oscillations can evolve in time, identifying three distinct `pathways' that can be followed, depending upon the initial magnitude of the mode excitation. These results are interesting as they show that the information buried in magnetar QPOs may be even richer than previously thought, and motivate more careful examination of magnetar light curves, to search for signatures of the different types of evolution that we have identified.
To appear in MNRAS. This version reflects changes made in response to referee's comments, mainly extra discussion in Section 2.2
References in corpus (14)
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Neutron conduction in the inner crust of a neutron star in the framework of the band theory of solids
- Neutron Star Asteroseismology. Axial Crust Oscillations in the Cowling Approximation
- QPOs during magnetar flares are not driven by mechanical normal modes of the crust
- On the theory of magnetar QPOs
- Maximum gravitational-wave energy emissible in magnetar flares
- Elastic or magnetic? A toy model for global magnetar oscillations with implications for QPOs during flares
- Alfvén QPOs in Magnetars
- Magnetars oscillations in the presence of a crust
- A new mechanism for saturating unstable r-modes in neutron stars
- Two-fluid models of superfluid neutron star cores
- On the oscillations of dissipative superfluid neutron stars
- Hydromagnetic waves in a superfluid neutron star with strong vortex pinning
- Fast X-ray Oscillations During Magnetar Flares
Cited by in corpus (13)
- Magnetars: the physics behind observations
- Measuring the neutron star equation of state using X-ray timing
- Gravitational Waves from Neutron Stars: A Review
- Magnetars: a short review and some sparse considerations
- Quasi-Periodic Oscillations in Short Recurring Bursts of the Soft-Gamma Repeater J1550-5418
- Quasi-Periodic Oscillations in Short Recurring Bursts of the magnetars SGR 1806-20 and SGR 1900+14 Observed With RXTE
- Constraints on the symmetry energy from observational probes of the neutron star crust
- A new scenario for magnetar formation: Tayler-Spruit dynamo in a proto-neutron star spun up by fallback
- Coherent magneto-elastic oscillations in superfluid magnetars
- Anti-glitches within the standard scenario of pulsar glitches
- Exploring a search for long-duration transient gravitational waves associated with magnetar bursts
- Nonlinear approach to the entrainment matrix of superfluid nucleon mixture at zero temperature
- A search using GEO600 for gravitational waves coincident with fast radio bursts from SGR 1935+2154