Magnetars vs. high magnetic field pulsars: a theoretical interpretation of the apparent dichotomy
arXiv:1109.5184 · doi:10.1088/0004-637X/741/2/123
Abstract
Highly magnetized neutron stars (NSs) are characterized by a bewildering range of astrophysical manifestations. Here, building on our simulations of the evolution of magnetic stresses in the NS crust and its ensuing fractures (Perna & Pons 2011), we explore in detail, for the middle-age and old NSs, the dependence of starquake frequency and energetics on the relative strength of the poloidal (B_p) and toroidal (B_tor) components. We find that, for B_p >~10^{14}G, since a strong crustal toroidal field B_tor B_p is quickly formed on a Hall timescale, the initial toroidal field needs to be B_tor >> B_p to have a clear influence on the outbursting behaviour. For initial fields B_p <~ 10^{14}G, it is very unlikely that a middle-age (t~10^5 years) NS shows any bursting activity. This study allows us to solve the apparent puzzle of how NSs with similar dipolar magnetic fields can behave in a remarkably different way: an outbursting 'magnetar' with a high X-ray luminosity, or a quiet, low-luminosity, "high-" radio pulsar. As an example, we consider the specific cases of the magnetar 1E2259+586 and the radio pulsar PSRJ1814-1744, which at present have a similar dipolar field ~6x10^{13}G. We determine for each object an initial magnetic field configuration that reproduces the observed timing parameters at their current age. The same two configurations also account for the differences in quiescent X-ray luminosity and for the 'magnetar/outbursting' behaviour of 1E2259+586 but not of PSRJ1814-1744. We further use the theoretically predicted surface temperature distribution to compute the light-curve for these objects. In the case of 1E2259+586, for which data are available, our predicted temperature distribution gives rise to a pulse profile whose double-peaked nature and modulation level is consistent with the observations.
8 pages emulateapj, 5 figures, accepted to ApJ
References in corpus (6)
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- 2D Cooling of Magnetized Neutron Stars
- A new low magnetic field magnetar: the 2011 outburst of Swift J1822.3-1606
- Atmosphere Models of Magnetized Neutron Stars: QED Effects, Radiation Spectra, and Polarization Signals
- Constraints on the Emission and Viewing Geometry of the Transient Anomalous X-ray Pulsar XTE J1810-197
Cited by in corpus (72)
- Magnetars: the physics behind observations
- Unifying the observational diversity of isolated neutron stars via magneto-thermal evolution models
- Neutron stars - cooling and transport
- Magnetars: Properties, Origin and Evolution
- NuSTAR discovery of a 3.76-second transient magnetar near Sagittarius A*
- A new low magnetic field magnetar: the 2011 outburst of Swift J1822.3-1606
- Systematic study of magnetar outbursts
- 16 Years of RXTE Monitoring of Five Anomalous X-ray Pulsars
- Twisted-torus configurations with large toroidal magnetic fields in relativistic stars
- Magnetar heating
- The outburst decay of the low magnetic field magnetar SGR 0418+5729
- Formation Rates and Evolution Histories of Magnetars
- A Magnetar-like Outburst from a High-B Radio Pulsar
- Magnetic, thermal and rotational evolution of isolated neutron stars
- Magnetic field evolution in magnetar crusts through three dimensional simulations
- Magnetic, thermal and rotational evolution of isolated neutron stars
- Modeling magnetar outbursts: Flux enhancements and the connection with short bursts and glitches
- Gravitational waves from massive magnetars formed in binary neutron star mergers
- Magnetically-driven crustquakes in neutron stars
- 3XMM J185246.6+003317: another low magnetic field magnetar
- Post-outburst X-ray flux and timing evolution of Swift J1822.3-1606
- The fundamental plane for radio magnetars
- Equilibrium spin pulsars unite neutron star populations
- Wind braking of magnetars
- Population Synthesis of Isolated Neutron Stars with magneto-rotational evolution II: from radio-pulsars to magnetars
- Creation of magnetic spots at the neutron star surface
- Young magnetars with fracturing crusts as fast radio burst repeaters
- Thermal emission of neutron stars with internal heaters
- Magneto-thermal evolution of neutron stars with coupled Ohmic, Hall and ambipolar effects via accurate finite-volume simulations
- Pulsars and magnetars
- Signatures of photon-axion conversion in the thermal spectra and polarization of neutron stars
- On the rate of crustal failures in young magnetars
- Powering Central Compact Objects with a Tangled Crustal Magnetic Field
- Axisymmetric magneto-plastic evolution of neutron-star crusts
- Searching for Time-Dependent Axion Dark Matter Signals in Pulsars
- Physics in Very Strong Magnetic Fields: Introduction and Overview
- Gravitational radiation from neutron stars deformed by crustal Hall drift
- X-ray and radio observations of the magnetar Swift J1834.9-0846 and its dust-scattering halo
- Anti-glitch of magnetar 1E 2259+586 in the wind braking scenario
- The imprint of the crustal magnetic field on the thermal spectra and pulse profiles of isolated neutron stars
- Millisecond Magnetars
- Magnetic Field Evolution in Neutron Star Crusts: Beyond the Hall Effect
- Long-term GRMHD simulation of magnetic field in isolated neutron stars
- The Early Evolution of Magnetar Rotation I: Slowly Rotating "Normal" Magnetars
- The life cycle of magnetars: a novel approach to estimate their ages
- The long-term enhanced brightness of the magnetar 1E 1547.0-5408
- Central compact objects in Kes 79 and RCW 103 as "hidden" magnetars with crustal activity
- Strongly magnetized pulsars: explosive events and evolution
- Pulse Frequency Fluctuations of Magnetars
- The X-ray outburst of the Galactic Center magnetar over six years of Chandra observations
- Modelling the Magnetic Field Configuration of Neutron Stars
- The multi-outburst activity of the magnetar in Westerlund I
- Afterburst thermal relaxation in neutron star crusts
- A NICER View on the 2020 Magnetar-Like Outburst of PSR J1846-0258
- Premerger phenomena in neutron-star binary coalescences
- Magneto-elastic equilibrium of a neutron-star crust
- Accumulation of elastic strain toward crustal fracture in magnetized neutron stars
- More than meets the eye: magnetars in disguise
- Thermodynamic Functions of Magnetized Coulomb Crystals
- Magnetic equilibria of relativistic axisymmetric stars: The impact of flow constants
- Magnetic field sustained by the elastic force in neutron star crusts
- The radio shut-off, glitch, and X-ray burst in 1E 1547.0-5408 interpreted through magnetic reconfiguration
- Does the gamma-ray binary LS I +61°303 harbor a magnetar?
- Measuring the Non-Axially-Symmetric Surface Temperature Distribution of the Central Compact Object in Puppis A
- Strong toroidal magnetic fields sustained by the elastic crust in a neutron star
- General-relativistic magnetar magnetospheres in 3D with physics-informed neural networks
- Reality of inverse cascading in neutron star crusts
- A high-magnetic-field radio pulsar survey with Swift/XRT
- The influence of magnetic field geometry on magnetars X-ray spectra
- Universality of gravitational radiation from magnetar magnetospheres
- Magnetic Field Evolution in the Crust of Neutron Stars: Crust Failure and Plastic Flow
- Spectral Evidence of Heavy Nuclei from the Neutron Star Crust in Magnetar Bursts