On the Magnetic Field of Pulsars with Realistic Neutron Stars Configurations
arXiv:1411.2621 · doi:10.1088/0004-637X/799/1/23
Abstract
We have recently developed a neutron star model fulfilling global and not local charge neutrality, both in the static and in the uniformly rotating cases. The model is described by the coupled Einstein-Maxwell-Thomas- Fermi (EMTF) equations, in which all fundamental interactions are accounted for in the framework of general relativity and relativistic mean field theory. Uniform rotation is introduced following the Hartle's formalism. We show that the use of realistic parameters of rotating neutron stars obtained from numerical integration of the self-consistent axisymmetric general relativistic equations of equilibrium leads to values of the magnetic field and radiation efficiency of pulsars very different from estimates based on fiducial parameters assuming a neutron star mass, M = 1.4 Msun, radius R = 10 km, and moment of inertia, I = 10^45 g cm^2. In addition, we compare and contrast the magnetic field inferred from the traditional Newtonian rotating magnetic dipole model with respect to the one obtained from its general relativistic analog which takes into due account the effect of the finite size of the source. We apply these considerations to the specific high-magnetic field pulsars class and show that, indeed, all these sources can be described as canonical pulsars driven by the rotational energy of the neutron star, and with magnetic fields lower than the quantum critical field for any value of the neutron star mass.
8 pages, 4 figures, accepted for publication in The Astrophysical Journal, in press
References in corpus (3)
Cited by in corpus (8)
- Theory of pulsar magnetosphere and wind
- Expansion of magnetic neutron stars in an energy (in)dependent spacetime
- Stability of magnetized strange quark matter in the MIT bag model with the density dependent bag pressure
- Searching for Time-Dependent Axion Dark Matter Signals in Pulsars
- GRB 090510: a genuine short-GRB from a binary neutron star coalescing into a Kerr-Newman black hole
- Evidence for a multipolar magnetic field in SGR J1745-2900 from X-ray light-curve analysis
- On the nature of some SGRs and AXPs as rotation-powered neutron stars
- Structure of Relativistic Stars Composed of Incompressible Matter in the Absence of Strict Electroneutrality