Magnetic-field evolution in a plastically-failing neutron-star crust
arXiv:1902.02121 · doi:10.1093/mnras/stz1042
Abstract
Under normal conditions in a neutron-star crust, ions are locked in place in the crustal lattice and only electrons are mobile, and magnetic-field evolution is thus directly related to the electron velocity. The evolution, however, builds magnetic stresses that can become sufficiently large for the crust to exceed its elastic limit, and to flow plastically. We consider the nature of this plastic flow and the back-reaction on the crustal magnetic field evolution. We formulate a plane-parallel model for the local failure, showing that surface motions are inevitable once the crust yields, in the absence of extra dissipative mechanisms. We perform numerical evolutions of the crustal magnetic field under the joint effect of Hall drift and Ohmic decay, tracking the build-up of magnetic stresses, and diagnosing crustal failure with the von Mises criterion. Beyond this point we solve for the coupled evolution of the plastic velocity and magnetic field. Our results suggest that to have a coexistence of a magnetar corona with small-scale magnetic features, the viscosity of the plastic flow must be roughly . We find significant motion at the surface at a rate of centimetres per year, and that the localised magnetic field is weaker than in evolutions without plastic flow. We discuss astrophysical implications, and how our local simulations could be used to build a global model of field evolution in the neutron-star crust.
15 pages, 7 figures. Published version; modest edits from v1 for clarity
References in corpus (15)
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Corona of Magnetars
- Untwisting magnetospheres of neutron stars
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- 2D Cooling of Magnetized Neutron Stars
- Three-dimensional simulations of the magnetic stress in a neutron star crust
- Magnetically-driven crustquakes in neutron stars
- A new code for the Hall-driven magnetic evolution of neutron stars
- Thermoplastic waves in magnetars
- Magnetic Field Evolution of Neutron Stars I: Basic formalism, numerical techniques, and first results
- Heating and cooling of magnetars with accreted envelopes
- Magnetic Axis Drift and Magnetic Spot Formation in Neutron Stars with Toroidal Fields
- Microscopic Vortex Velocity in the Inner Crust and Outer Core of Neutron Stars
- On the magnetic field evolution timescale in superconducting neutron star cores
- Resistive Tearing Instability in Electron-MHD: Application to Neutron Star Crusts
Cited by in corpus (46)
- Magnetic, thermal and rotational evolution of isolated neutron stars
- Magnetic, thermal and rotational evolution of isolated neutron stars
- 3D modelling of magneto-thermal evolution of neutron stars: method and test cases
- Magneto-thermal evolution of neutron stars with coupled Ohmic, Hall and ambipolar effects via accurate finite-volume simulations
- On the rate of crustal failures in young magnetars
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. I. Theoretical framework and crust breaking
- Powering Central Compact Objects with a Tangled Crustal Magnetic Field
- Axisymmetric magneto-plastic evolution of neutron-star crusts
- Starquakes in millisecond pulsars and gravitational waves emission
- Pulse Peak Migration during the Outburst Decay of the Magnetar SGR 1830-0645: Crustal Motion and Magnetospheric Untwisting
- The game of life on a magnetar crust: from -ray flares to FRBs
- 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
- Evolutionary implications of a magnetar interpretation for GLEAM-X J162759.5-523504.3
- Magnetic Field Evolution in Neutron Star Crusts: Beyond the Hall Effect
- The 2022 high-energy outburst and radio disappearing act of the magnetar 1E 1547.0-5408
- 3D evolution of neutron star magnetic-fields from a realistic core-collapse turbulent topology
- Non-Axisymmetric Precession of Magnetars and Fast Radio Bursts
- Fast cooling and internal heating in hyperon stars
- Magnetic-field evolution with large-scale velocity circulation in a neutron-star crust
- Electrostatic energy of Coulomb crystals with polarized electron background
- Current closure through the neutron star crust
- Tayler-Spruit dynamo in stably stratified rotating fluids: Application to proto-magnetars
- Modelling 3D Force-Free Neutron Star Magnetospheres
- Evolution of magnetic deformation in neutron star crust
- Stability of axially symmetric magnetic fields in stars
- Magneto-elastic equilibrium of a neutron-star crust
- Accumulation of elastic strain toward crustal fracture in magnetized neutron stars
- Three-Dimensional Magnetothermal Simulations of Magnetar Outbursts
- Magnetic field sustained by the elastic force in neutron star crusts
- Crust-core transition of a neutron star: effect of the temperature under strong magnetic fields
- Strong magnetic fields: neutron stars with an extended inner crust
- X-ray burst and persistent emission properties of the magnetar SGR 1830-0645 in outburst
- The radio shut-off, glitch, and X-ray burst in 1E 1547.0-5408 interpreted through magnetic reconfiguration
- Measuring the Non-Axially-Symmetric Surface Temperature Distribution of the Central Compact Object in Puppis A
- Magnetar structure in non-linear electrodynamics with mixed poloidal-toroidal fields
- Validating and improving two-fluid simulations of the magnetic field evolution in neutron star cores
- Revisiting thermoelectric effects in the crust of neutron stars
- General-relativistic magnetar magnetospheres in 3D with physics-informed neural networks
- Magnetohydrodynamic stability of magnetars in the ultrastrong field regime II: The crust
- Reality of inverse cascading in neutron star crusts
- Breaking properties of multicomponent neutron star crust
- Evolutionary deformation toward the elastic limit by a magnetic field confined in the neutron--star crust
- Magnetic Field Evolution in the Crust of Neutron Stars: Crust Failure and Plastic Flow
- Numerical simulation of electron magnetohydrodynamics with Landau-quantized electrons in magnetar crusts
- Investigating the Recursive Short X-ray Burst Behavior of Magnetars Through Crustal Interactions