Relativistic models of magnetars: the twisted-torus magnetic field configuration
arXiv:0903.0556 · doi:10.1111/j.1365-2966.2009.14990.x
Abstract
We find general relativistic solutions of equilibrium magnetic field configurations in magnetars, extending previous results of Colaiuda et al. (2008). Our method is based on the solution of the relativistic Grad-Shafranov equation, to which Maxwell's equations can be reduced in some limit. We obtain equilibrium solutions with the toroidal magnetic field component confined into a finite region inside the star, and the poloidal component extending to the exterior. These so-called twisted-torus configurations have been found to be the final outcome of dynamical simulations in the framework of Newtonian gravity, and appear to be more stable than other configurations. The solutions include higher order multipoles, which are coupled to the dominant dipolar field. We use arguments of minimal energy to constrain the ratio of the toroidal to the poloidal field.
13 pages, 12 figures. Minor changes to match the version published on MNRAS
References in corpus (8)
- Magneto--thermal evolution of neutron stars
- Modelling magnetically deformed neutron stars
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- 2D Cooling of Magnetized Neutron Stars
- Magnetic fields in axisymmetric neutron stars
- On non-axisymmetric magnetic equilibria in stars
- Relativistic models of magnetars: structure and deformations
- Magnetars versus Radio Pulsars: MHD Stability in Newborn Highly Magnetized Neutron Stars
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