Stability of magnetic fields in non-barotropic stars: an analytic treatment
arXiv:1302.0273 · doi:10.1093/mnras/stt913
Abstract
Magnetic fields in upper main-sequence stars, white dwarfs, and neutron stars are known to persist for timescales comparable to their lifetimes. From a theoretical perspective this is problematic, as it can be shown that simple magnetic field configurations are always unstable. In non-barotropic stars, stable stratification allows for a much wider range of magnetic field structures than in barotropic stars, and helps stabilize them by making it harder to induce radial displacements. Recent simulations by Braithwaite and collaborators have shown that, in stably stratified stars, random initial magnetic fields evolve into nearly axisymmetric configurations with both poloidal and toroidal components, which then remain stable for some time. It is desirable to provide an analytic study of the stability of such fields. We write an explicit expression for a plausible equilibrium structure of an axially symmetric magnetic field with both poloidal and toroidal components of adjustable strengths, in a non-barotropic static fluid star, and study its stability using the energy principle. We construct a displacement field that should be a reasonable approximation to the most unstable mode of a toroidal field, and confirm Braithwaite's result that a given toroidal field can be stabilized by a poloidal field containing much less energy than the former. This is consistent with the speculation that the toroidal field is the main reservoir powering magnetar activity. The deformation of a neutron star caused by the hidden toroidal field can also cause emission of gravitational waves.
23 pages, 6 figures; further discussion and an appendix added; corrected typos; accepted by MNRAS
References in corpus (3)
Cited by in corpus (112)
- Magnetars
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- Magnetars: the physics behind observations
- Magnetars: Properties, Origin and Evolution
- Gravitational Waves from Neutron Stars: A Review
- Magnetar heating
- Observationally constraining gravitational wave emission from short gamma-ray burst remnants
- Atmospheres and radiating surfaces of neutron stars
- The evolution of binary neutron star post-merger remnants: a review
- Gravitational waves from massive magnetars formed in binary neutron star mergers
- Magnetic neutron star cooling and microphysics
- Neutron star bulk viscosity, "spin-flip" and GW emission of newly born magnetars
- Hall equilibria with toroidal and poloidal fields: application to neutron stars
- Magnetic Field Generation in Stars
- Modeling of Magneto-Rotational Stellar Evolution I. Method and first applications
- Effects of strong magnetic fields and rotation on white dwarf structure
- The contrasting magnetic fields of superconducting pulsars and magnetars
- Magnetic signatures on mixed-mode frequencies. I. An axisymmetric fossil field inside the core of red giants
- Neutron star deformation due to multipolar magnetic fields
- General relativistic models for rotating magnetized neutron stars in conformally flat spacetime
- The relevance of ambipolar diffusion for neutron star evolution
- Neutron star deformation due to poloidal-toroidal magnetic fields of arbitrary multipole order: a new analytic approach
- Instability of Magnetic Equilibria in Barotropic Stars
- What is the magnetic field distribution for the equation of state of magnetized neutron stars?
- The role of currents distribution in general relativistic equilibria of magnetized neutron stars
- A self-consistent study of magnetic field effects on hybrid stars
- Continuous gravitational wave from magnetized white dwarfs and neutron stars: possible missions for LISA, DECIGO, BBO, ET detectors
- Crust-magnetosphere coupling during magnetar evolution and implications for the surface temperature
- Magnetic field evolution and equilibrium configurations in neutron star cores: the effect of ambipolar diffusion
- Tilted torus magnetic fields in neutron stars and their gravitational wave signatures
- Effects of the quark-hadron phase transition on highly magnetized neutron stars
- On magnetic equilibria in barotropic stars
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. I. Theoretical framework and crust breaking
- Magnetic fields driven by tidal mixing in radiative stars
- Magnetar activity mediated by plastic deformations of neutron star crust
- Brightening X-ray/Optical/Radio Emission of GW170817/SGRB 170817A: Results of an Electron-Positron Wind from the Central Engine?
- Gravitational radiation from neutron stars deformed by crustal Hall drift
- Continuous gravitational waves from Galactic neutron stars: demography, detectability and prospects
- Fossil field decay due to nonlinear tides in massive binaries
- Survival times of supramassive neutron stars resulting from binary neutron star mergers
- Many-body forces in magnetic neutron stars
- Fast magnetic field evolution in neutron stars: the key role of magnetically induced fluid motions in the core
- The force-free twisted magnetosphere of a neutron star
- The internal composition of proto-neutron stars under strong magnetic fields
- Ultra-compact X-ray binaries as dual-line gravitational-wave sources
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- Precessing magnetars as central engines in short gamma-ray bursts
- Instability of twisted magnetar magnetospheres
- Millisecond Magnetars
- Persistent crust-core spin lag in neutron stars
- Two-fluid simulations of the magnetic field evolution in neutron star cores in the weak-coupling regime
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. II. As triggers for precursor flares of short gamma-ray bursts
- Magnetic signatures on mixed-mode frequencies. II. Period spacings as a probe of the internal magnetism of red giants
- Revisiting field burial by accretion onto neutron stars
- Long-term evolution of the force-free twisted magnetosphere of a magnetar
- Detecting deep axisymmetric toroidal magnetic fields in stars. The traditional approximation of rotation for differentially rotating deep spherical shells with a general azimuthal magnetic field
- Magnetic field configurations in neutron stars from MHD simulations
- Magnetism in High-Mass Stars
- Constraining the ellipticity of strongly magnetized neutron stars powering superluminous supernovae
- Quasi-universality of the magnetic deformation of neutron stars in general relativity and beyond
- Structure of ultra-magnetised neutron stars
- Constraining the long-lived supramassive neutron stars by magnetar boosted kilonovae
- Stochastic gravitational wave background from magnetic deformation of newly born magnetars
- Non-Axisymmetric Precession of Magnetars and Fast Radio Bursts
- Does elasticity stabilise a magnetic neutron star?
- The freedom to choose neutron star magnetic field equilibria
- Stability Analysis of Magnetised Neutron Stars - A Semi-analytic Approach
- Stochastic gravitational wave background from newly born massive magnetars: The role of a dense matter equation of state
- Magnetic fields in late-stage proto-neutron stars
- Magnetically confined mountains on accreting neutron stars with multipole magnetic fields
- Interpreting the AXP 1E 2259+586 antiglitch as a change in internal magnetization
- Tayler-Spruit dynamo in stably stratified rotating fluids: Application to proto-magnetars
- Detection possibility of continuous gravitational waves from rotating magnetized neutron stars
- Linking the Interiors and Surfaces of Magnetic Stars
- Stability of toroidal magnetic fields in stellar interiors
- Stability of axially symmetric magnetic fields in stars
- Premerger phenomena in neutron-star binary coalescences
- Three-dimensional numerical simulations of ambipolar diffusion in NS cores in the one-fluid approximation: instability of poloidal magnetic field
- Magneto-elastic equilibrium of a neutron-star crust
- Minute-cadence Observations of the LAMOST Fields with the TMTS: III. Statistic Study of the Flare Stars from the First Two Years
- Crust effects and the cooling relaxation time in highly magnetized neutron stars
- The impact of superconductivity and the Hall effect in models of magnetized neutron stars
- Magnetic field sustained by the elastic force in neutron star crusts
- Monopolar and quadrupolar gravitational radiation from magnetically deformed neutron stars in modified gravity
- Magnetic equilibria of relativistic axisymmetric stars: The impact of flow constants
- Probing the physics of newly born magnetars through observation of superluminous supernovae
- The radio shut-off, glitch, and X-ray burst in 1E 1547.0-5408 interpreted through magnetic reconfiguration
- Measuring spin in coalescing binaries of neutron stars showing double precursors
- Appearance of the prolate and the toroidal magnetic field dominated stars - Analytic approach
- Spin paramagnetic deformation of a neutron star
- Oscillations of red giant stars with magnetic damping in the core. I. Dissipation of mode energy in dipole-like magnetic fields
- Magnetar structure in non-linear electrodynamics with mixed poloidal-toroidal fields
- Incidence of afterglow plateaus in gamma-ray bursts associated with binary neutron star mergers
- Investigating magnetically-induced distortions of neutron stars through gamma-ray burst X-ray plateaus
- Magnetohydrodynamic stability of magnetars in the ultrastrong field regime I: The core
- Magnetic fields in non-convective regions of stars
- Magnetic fields of neutron stars
- Standing torsional Alfvén waves as the source of the rotational period variation in magnetic early-type stars
- Validating and improving two-fluid simulations of the magnetic field evolution in neutron star cores
- Modeling Magnetohydrodynamic Equilibrium in Magnetars with Applications to Continuous Gravitational Wave Production
- Strong toroidal magnetic fields sustained by the elastic crust in a neutron star
- Secular dipole-dipole stability of magnetic binaries
- Axisymmetric magnetic modes of neutron stars having mixed poloidal and toroidal magnetic fields
- Magnetohydrodynamic equilibria in barotropic stars
- Exploring the probing power of gamma-Dor's inertial dip for core magnetism: case of a toroidal field
- Topology of the Superconducting Heart of Neutron Stars: Effects of Microphysics and Gravitational-Wave Signatures
- Magnetar Outburst Models with Cooling Simulations
- Axisymmetric spheroidal modes of neutron stars magnetized with poloidal magnetic fields
- Search for Stable Magnetohydrodynamic Equilibria in Barotropic Stars
- A 4.5-s Quasiperiodic Spectral Oscillation in GRB 230307A: Evidence for Free Precession of a Post-Merger Magnetar?
- Continuous Gravitational Waves from Supersoft X-ray Sources: Promising Targets for deci-Hz Detectors
- Evolution of random initial magnetic fields in stably stratified and barotropic stars